Publications of R. Vainio


A list of publications authored or co-authored by R. Vainio, derived from the SAO/NASA Astrophysics Data System (ADS). The number in brackets after each title indicates the number of citations that the paper has received.

Orcid ID: 0000-0002-3298-2067

List of publications ordered by citations
Number of papers: 163 (refereed: 146)
No. of citations: 3685
First author papers: 14 (refereed: 12)

2025

  1. Towards advanced forecasting of solar energetic particle events with the PARASOL model [0]
    Afanasiev, Alexandr, Wijsen, Nicolas & Vainio, Rami, Journal of Space Weather and Space Climate, 15, 3
  2. Electron and proton peak intensities as observed by a five-spacecraft fleet in solar cycle 25 [0]
    Farwa, G. U., Dresing, N., Gieseler, J., Vuorinen, L., Richardson, I. G., Palmroos, C., Valkila, S., Heber, B., Jensen, S., Kühl, P., Rodríguez-García, L. & Vainio, R., A&A, 693, A198
  3. Resolving spatial and temporal shock structures using LOFAR observations of type II radio bursts [0]
    Morosan, D. E., Jebaraj, I. C., Zhang, P., Zucca, P., Dabrowski, B., Gallagher, P. T., Krankowski, A., Vocks, C. & Vainio, R., A&A, 695, A70
  4. A new method for determining the onset times of solar energetic particles and their uncertainties: Poisson-CUSUM bootstrap hybrid method [1]
    Palmroos, C., Dresing, N., Gieseler, J., Gutiérrez, C. P. & Vainio, R., A&A, 694, A221
  5. Solar energetic particles injected inside and outside a magnetic cloud: The widespread solar energetic particle event on 2022 January 20 [2]
    Rodríguez-García, L., Gómez-Herrero, R., Dresing, N., Balmaceda, L. A., Palmerio, E., Kouloumvakos, A., Jebaraj, I. C., Espinosa Lara, F., Roco, M., Palmroos, C., Warmuth, A., Nicolaou, G., Mason, G. M., Guo, J., Laitinen, T., Cernuda, I., Nieves-Chinchilla, T., Fedeli, A., Lee, C. O., Cohen, C. M. S., Owen, C. J., Ho, G. C., Malandraki, O., Vainio, R. & Rodríguez-Pacheco, J., A&A, 694, A64
  6. An Overview of Solar Orbiter Observations of Interplanetary Shocks in Solar Cycle 25 [1]
    Trotta, Domenico, Dimmock, Andrew, Hietala, Heli, Blanco-Cano, Xochitl, Horbury, Timothy S., Vainio, Rami, Dresing, Nina, Jebaraj, Immanuel Christopher, Espinosa Lara, Francisco, Gómez-Herrero, Raúl, Rodriguez-Pacheco, Javier, Kartavykh, Yulia, Lario, David, Gieseler, Jan, Janvier, Miho, Maksimovic, Milan, Talebpour Sheshvan, Nasrin, Owen, Christopher J., Kilpua, Emilia K. J. & Wimmer-Schweingruber, Robert F., ApJS, 277, 2

2024

  1. Effects of adiabatic focusing and free-escape boundaries in coronal shock acceleration [1]
    Annie John, Lidiya, Nyberg, Seve, Vuorinen, Laura, Vainio, Rami, Afanasiev, Alexandr, Poedts, Stefaan & Wijsen, Nicolas, Journal of Space Weather and Space Climate, 14, 15
  2. The solar cycle 25 multi-spacecraft solar energetic particle event catalog of the SERPENTINE project [6]
    Dresing, N., Yli-Laurila, A., Valkila, S., Gieseler, J., Morosan, D. E., Farwa, G. U., Kartavykh, Y., Palmroos, C., Jebaraj, I., Jensen, S., Kühl, P., Heber, B., Espinosa, F., Gómez-Herrero, R., Kilpua, E., Linho, V. -V., Oleynik, P., Hayes, L. A., Warmuth, A., Schuller, F., Collier, H., Xiao, H., Asvestari, E., Trotta, D., Mitchell, J. G., Cohen, C. M. S., Labrador, A. W., Hill, M. E. & Vainio, R., A&A, 687, A72
  3. Energetic particle acceleration and transport with the novel Icarus + PARADISE model [3]
    Husidic, Edin, Wijsen, Nicolas, Baratashvili, Tinatin, Poedts, Stefaan & Vainio, Rami, Journal of Space Weather and Space Climate, 14, 11
  4. Cross-field Diffusion Effects on Particle Transport in a Solar Coronal Flux Rope [0]
    Husidic, Edin, Wijsen, Nicolas, Linan, Luis, Brchnelova, Michaela, Vainio, Rami & Poedts, Stefaan, ApJ, 976, L31
  5. The evolution of coronal shock wave properties and their relation with solar energetic particles [0]
    Jarry, Manon, Dresing, Nina, Rouillard, Alexis P., Plotnikov, Illya, Vainio, Rami, Palmroos, Christian, Kouloumvakos, Athanasios & Vuorinen, Laura, A&A, 692, A92
  6. Direct Measurements of Synchrotron-emitting Electrons at Near-Sun Shocks [5]
    Jebaraj, I. C., Agapitov, O. V., Gedalin, M., Vuorinen, L., Miceli, M., Cohen, C. M. S., Voshchepynets, A., Kouloumvakos, A., Dresing, N., Marmyleva, A., Krasnoselskikh, V., Balikhin, M., Mitchell, J. G., Labrador, A. W., Wijsen, N., Palmerio, E., Colomban, L., Pomoell, J., Kilpua, E. K. J., Pulupa, M., Mozer, F. S., Raouafi, N. E., McComas, D. J., Bale, S. D. & Vainio, R., ApJ, 976, L7
  7. Acceleration of Electrons and Ions by an "Almost" Astrophysical Shock in the Heliosphere [10]
    Jebaraj, Immanuel Christopher, Agapitov, Oleksiy, Krasnoselskikh, Vladimir, Vuorinen, Laura, Gedalin, Michael, Choi, Kyung-Eun, Palmerio, Erika, Wijsen, Nicolas, Dresing, Nina, Cohen, Christina, Kouloumvakos, Athanasios, Balikhin, Michael, Vainio, Rami, Kilpua, Emilia, Afanasiev, Alexandr, Verniero, Jaye, Mitchell, John Grant, Trotta, Domenico, Hill, Matthew, Raouafi, Nour & Bale, Stuart D., ApJ, 968, L8
  8. The multi-spacecraft high-energy solar particle event of 28 October 2021 [8]
    Kouloumvakos, A., Papaioannou, A., Waterfall, C. O. G., Dalla, S., Vainio, R., Mason, G. M., Heber, B., Kühl, P., Allen, R. C., Cohen, C. M. S., Ho, G., Anastasiadis, A., Rouillard, A. P., Rodríguez-Pacheco, J., Guo, J., Li, X., Hörlöck, M. & Wimmer-Schweingruber, R. F., A&A, 682, A106
  9. Connecting remote and in situ observations of shock-accelerated electrons associated with a coronal mass ejection [8]
    Morosan, D. E., Pomoell, J., Palmroos, C., Dresing, N., Asvestari, E., Vainio, R., Kilpua, E. K. J., Gieseler, J., Kumari, A. & Jebaraj, I. C., A&A, 683, A31
  10. Properties of an Interplanetary Shock Observed at 0.07 and 0.7 au by Parker Solar Probe and Solar Orbiter [17]
    Trotta, Domenico, Larosa, Andrea, Nicolaou, Georgios, Horbury, Timothy S., Matteini, Lorenzo, Hietala, Heli, Blanco-Cano, Xochitl, Franci, Luca, Chen, C. H. K., Zhao, Lingling, Zank, Gary P., Cohen, Christina M. S., Bale, Stuart D., Laker, Ronan, Fargette, Nais, Valentini, Francesco, Khotyaintsev, Yuri, Kieokaew, Rungployphan, Raouafi, Nour, Davies, Emma, Vainio, Rami, Dresing, Nina, Kilpua, Emilia, Karlsson, Tomas, Owen, Christopher J. & Wimmer-Schweingruber, Robert F., ApJ, 962, 147
  11. Observation of a Fully-formed Forward–Reverse Shock Pair due to the Interaction between Two Coronal Mass Ejections at 0.5 au [4]
    Trotta, Domenico, Dimmock, Andrew P., Blanco-Cano, Xochitl, Forsyth, Robert J., Hietala, Heli, Fargette, Naïs, Larosa, Andrea, Lugaz, Noé, Palmerio, Erika, Good, Simon W., Soljento, Juska E., Kilpua, Emilia K. J., Yordanova, Emiliya, Pezzi, Oreste, Nicolaou, Georgios, Horbury, Timothy S., Vainio, Rami, Dresing, Nina, Owen, Christopher J. & Wimmer-Schweingruber, Robert F., ApJ, 971, L35

2023

  1. Self-consistent modeling of the energetic storm particle event of November 10, 2012 [7]
    Afanasiev, A., Vainio, R., Trotta, D., Nyberg, S., Talebpour Sheshvan, N., Hietala, H. & Dresing, N., A&A, 679, A111
  2. Foresail-2: Space Physics Mission in a Challenging Environment [4]
    Anger, Marius, Niemelä, Petri, Cheremetiev, Kiril, Clayhills, Bruce, Fetzer, Anton, Lundén, Ville, Hiltunen, Markus, Kärkkäinen, Tomi, Mayank, M., Turc, Lucile, Osmane, Adnane, Palmroth, Minna, Kilpua, Emilia, Oleynik, Philipp, Vainio, Rami, Virtanen, Pasi, Toivanen, Petri, Janhunen, Pekka, Fischer, David, Le Bonhomme, Guillaume, Slavinskis, Andris & Praks, Jaan, Space Science Reviews, 219, 66
  3. Open-Source Analysis Platform for Solar Energetic Particles provided by SERPENTINE [0]
    Gieseler, Jan, Palmroos, Christian, Dresing, Nina, Morosan, Diana M., Price, Daniel J., Yli-Laurila, Aleksi, Asvestari, Eleanna, Valkila, Saku & Vainio, Rami, Data, Analysis and Software in Heliophysics (DASH) 2023, p. 42
  4. Providing Tools for the Analysis of Solar Energetic Particles as Jupyter Notebooks – Experiences from the SERPENTINE Project [0]
    Gieseler, Jan, Palmroos, Christian, Dresing, Nina, Kouloumvakos, Athanasios, Morosan, Diana M., Price, Daniel J., Trotta, Domenico, Yli-Laurila, Aleksi & Vainio, Rami, Data, Analysis and Software in Heliophysics (DASH) 2023, p. 59
  5. Relativistic electron beams accelerated by an interplanetary shock [11]
    Jebaraj, I. C., Dresing, N., Krasnoselskikh, V., Agapitov, O. V., Gieseler, J., Trotta, D., Wijsen, N., Larosa, A., Kouloumvakos, A., Palmroos, C., Dimmock, A., Kolhoff, A., Kühl, P., Fleth, S., Fedeli, A., Valkila, S., Lario, D., Khotyaintsev, Yu. V. & Vainio, R., A&A, 680, L7
  6. Multiple injections of energetic electrons associated with the flare and CME event on 9 October 2021 [21]
    Jebaraj, Immanuel C., Kouloumvakos, A., Dresing, N., Warmuth, A., Wijsen, N., Palmroos, C., Gieseler, J., Marmyleva, A., Vainio, R., Krupar, V., Wiegelmann, T., Magdalenic, J., Schuller, F., Battaglia, A. F. & Fedeli, A., A&A, 675, A27
  7. A Comparative Study of Ground-level Enhancement Events of Solar Energetic Particles [2]
    Kocharov, Leon, Mishev, Alexander, Riihonen, Esa, Vainio, Rami & Usoskin, Ilya, ApJ, 958, 122
  8. A type II solar radio burst without a coronal mass ejection [11]
    Morosan, D. E., Pomoell, J., Kumari, A., Kilpua, E. K. J. & Vainio, R., A&A, 675, A98
  9. Modelling the interaction of Alfvénic fluctuations with coronal mass ejections in the low solar corona [4]
    Sishtla, Chaitanya Prasad, Pomoell, Jens, Vainio, Rami, Kilpua, Emilia & Good, Simon, A&A, 679, A54
  10. On the role of interplanetary shocks in accelerating MeV electrons [4]
    Talebpour Sheshvan, N., Dresing, N., Vainio, R., Afanasiev, A. & Morosan, D. E., A&A, 674, A133
  11. Irregular Proton Injection to High Energies at Interplanetary Shocks [9]
    Trotta, Domenico, Horbury, Timothy S., Lario, David, Vainio, Rami, Dresing, Nina, Dimmock, Andrew, Giacalone, Joe, Hietala, Heli, Wimmer-Schweingruber, Robert F., Berger, Lars & Yang, Liu, ApJ, 957, L13
  12. High Energy Solar Particle Events and Their Relationship to Associated Flare, CME and GLE Parameters [13]
    Waterfall, C. O. G., Dalla, S., Raukunen, O., Heynderickx, D., Jiggens, P. & Vainio, R., Space Weather, 21, e2022SW003334
  13. The Effect of the Ambient Solar Wind Medium on a CME-driven Shock and the Associated Gradual Solar Energetic Particle Event [20]
    Wijsen, Nicolas, Lario, David, Sánchez-Cano, Beatriz, Jebaraj, Immanuel C., Dresing, Nina, Richardson, Ian G., Aran, Angels, Kouloumvakos, Athanasios, Ding, Zheyi, Niemela, Antonio, Palmerio, Erika, Carcaboso, Fernando, Vainio, Rami, Afanasiev, Alexandr, Pinto, Marco, Pacheco, Daniel, Poedts, Stefaan & Heyner, Daniel, ApJ, 950, 172

2022

  1. On the Role of Coronal Shocks for Accelerating Solar Energetic Electrons [35]
    Dresing, Nina, Kouloumvakos, Athanasios, Vainio, Rami & Rouillard, Alexis, ApJ, 925, L21
  2. The first widespread solar energetic particle event of solar cycle 25 on 2020 November 29. Shock wave properties and the wide distribution of solar energetic particles [32]
    Kouloumvakos, A., Kwon, R. Y., Rodríguez-García, L., Lario, D., Dresing, N., Kilpua, E. K. J., Vainio, R., Török, T., Plotnikov, I., Rouillard, A. P., Downs, C., Linker, J. A., Malandraki, O. E., Pinto, R. F., Riley, P. & Allen, R. C., A&A, 660, A84
  3. Influence of Large-scale Interplanetary Structures on the Propagation of Solar Energetic Particles: The Multispacecraft Event on 2021 October 9 [16]
    Lario, D., Wijsen, N., Kwon, R. Y., Sánchez-Cano, B., Richardson, I. G., Pacheco, D., Palmerio, E., Stevens, M. L., Szabo, A., Heyner, D., Dresing, N., Gómez-Herrero, R., Carcaboso, F., Aran, A., Afanasiev, A., Vainio, R., Riihonen, E., Poedts, S., Brüden, M., Xu, Z. G. & Kollhoff, A., ApJ, 934, 55
  4. Shock-accelerated electrons during the fast expansion of a coronal mass ejection [11]
    Morosan, D. E., Pomoell, J., Kumari, A., Vainio, R. & Kilpua, E. K. J., A&A, 668, A15
  5. Simulating Three-Wave Interactions and the Resulting Particle Transport Coefficients in a Magnetic Loop [1]
    Nyberg, Seve & Vainio, Rami, Physics, 4, 394
  6. The first ground-level enhancement of solar cycle 25 on 28 October 2021 [41]
    Papaioannou, A., Kouloumvakos, A., Mishev, A., Vainio, R., Usoskin, I., Herbst, K., Rouillard, A. P., Anastasiadis, A., Gieseler, J., Wimmer-Schweingruber, R. & Kühl, P., A&A, 660, L5
  7. The probabilistic solar particle event forecasting (PROSPER) model [11]
    Papaioannou, Athanasios, Vainio, Rami, Raukunen, Osku, Jiggens, Piers, Aran, Angels, Dierckxsens, Mark, Mallios, Sotirios A., Paassilta, Miikka & Anastasiadis, Anastasios, Journal of Space Weather and Space Climate, 12, 24
  8. Annual integral solar proton fluences for 1984-2019 [5]
    Raukunen, O., Usoskin, I., Koldobskiy, S., Kovaltsov, G. & Vainio, R., A&A, 665, A65
  9. Monte Carlo Simulations of Electron Acceleration at Bow Waves Driven by Fast Jets in the Earth's Magnetosheath [6]
    Vuorinen, Laura, Vainio, Rami, Hietala, Heli & Liu, Terry Z., ApJ, 934, 165
  10. Observation-based modelling of the energetic storm particle event of 14 July 2012 [31]
    Wijsen, N., Aran, A., Scolini, C., Lario, D., Afanasiev, A., Vainio, R., Sanahuja, B., Pomoell, J. & Poedts, S., A&A, 659, A187

2021

  1. Multiple Sources of Solar High-energy Protons [14]
    Kocharov, Leon, Omodei, Nicola, Mishev, Alexander, Pesce-Rollins, Melissa, Longo, Francesco, Yu, Sijie, Gary, Dale E., Vainio, Rami & Usoskin, Ilya, ApJ, 915, 12
  2. New reconstruction of event-integrated spectra (spectral fluences) for major solar energetic particle events [35]
    Koldobskiy, S., Raukunen, O., Vainio, R., Kovaltsov, G. A. & Usoskin, I., A&A, 647, A132
  3. Coronal Conditions for the Occurrence of Type II Radio Bursts [32]
    Kouloumvakos, Athanasios, Rouillard, Alexis, Warmuth, Alexander, Magdalenic, Jasmina, Jebaraj, Immanuel. C., Mann, Gottfried, Vainio, Rami & Monstein, Christian, ApJ, 913, 99
  4. Aalto-1, multi-payload CubeSat: In-orbit results and lessons learned [27]
    Mughal, M. Rizwan, Praks, J., Vainio, R., Janhunen, P., Envall, J., Näsilä, A., Oleynik, P., Niemelä, P., Nyman, S., Slavinskis, A., Gieseler, J., Jovanovic, N., Riwanto, B., Toivanen, P., Leppinen, H., Tikka, T., Punkkinen, A., Punkkinen, R., Hedman, H. -P., Lill, J. -O. & Slotte, J. M. K., Acta Astronautica, 187, 557
  5. On the Origin of Hard X-Ray Emissions from the Behind-the-limb Flare on 2014 September 1 [4]
    Wu, Yihong, Rouillard, Alexis P., Kouloumvakos, Athanasios, Vainio, Rami, Afanasiev, Alexandr N., Plotnikov, Illya, Murphy, Ronald J., Mann, Gottfried J. & Warmuth, Alexander, ApJ, 909, 163

2020

  1. A New Method to Model Magnetic Cloud-driven Forbush Decreases: The 2016 August 2 Event [11]
    Benella, Simone, Laurenza, Monica, Vainio, Rami, Grimani, Catia, Consolini, Giuseppe, Hu, Qiang & Afanasiev, Alexandr, ApJ, 901, 21
  2. Coulomb drag propulsion experiments of ESTCube-2 and FORESAIL-1 [25]
    Iakubivskyi, Iaroslav, Janhunen, Pekka, Praks, Jaan, Allik, Viljo, Bussov, Kadri, Clayhills, Bruce, Dalbins, Janis, Eenmäe, Tõnis, Ehrpais, Hendrik, Envall, Jouni, Haslam, Sean, Ilbis, Erik, Jovanovic, Nemanja, Kilpua, Emilia, Kivastik, Joosep, Laks, Jürgen, Laufer, Philipp, Merisalu, Maido, Meskanen, Matias, Märk, Robert, Nath, Ankit, Niemelä, Petri, Noorma, Mart, Mughal, Muhammad Rizwan, Nyman, Samuli, Pajusalu, Mihkel, Palmroth, Minna, Paul, Aditya Savio, Peltola, Tatu, Plans, Mathias, Polkko, Jouni, Islam, Quazi Saimoon, Reinart, Anu, Riwanto, Bagus, Sammelselg, Väino, Sate, Janis, Sünter, Indrek, Tajmar, Martin, Tanskanen, Eija, Teras, Hans, Toivanen, Petri, Vainio, Rami, Väänänen, Mika & Slavinskis, Andris, Acta Astronautica, 177, 771
  3. Three-dimensional reconstruction of multiple particle acceleration regions during a coronal mass ejection [14]
    Morosan, D. E., Palmerio, E., Pomoell, J., Vainio, R., Palmroth, M. & Kilpua, E. K. J., A&A, 635, A62

2019

  1. In Situ Data and Effect Correlation During September 2017 Solar Particle Event [40]
    Jiggens, P., Clavie, C., Evans, H., O'Brien, T. P., Witasse, O., Mishev, A. L., Nieminen, P., Daly, E., Kalegaev, V., Vlasova, N., Borisov, S., Benck, S., Poivey, C., Cyamukungu, M., Mazur, J., Heynderickx, D., Sandberg, I., Berger, T., Usoskin, I. G., Paassilta, M., Vainio, R., Straube, U., Müller, D., Sánchez-Cano, B., Hassler, D., Praks, J., Niemelä, P., Leppinen, H., Punkkinen, A., Aminalragia-Giamini, S. & Nagatsuma, T., Space Weather, 17, 99
  2. Outer Van Allen Radiation Belt Response to Interacting Interplanetary Coronal Mass Ejections [17]
    Kilpua, E. K. J., Turner, D. L., Jaynes, A. N., Hietala, H., Koskinen, H. E. J., Osmane, A., Palmroth, M., Pulkkinen, T. I., Vainio, R., Baker, D. & Claudepierre, S. G., Journal of Geophysical Research (Space Physics), 124, 1927
  3. Connecting the Properties of Coronal Shock Waves with Those of Solar Energetic Particles [75]
    Kouloumvakos, Athanasios, Rouillard, Alexis P., Wu, Yihong, Vainio, Rami, Vourlidas, Angelos, Plotnikov, Illya, Afanasiev, Alexandr & Önel, Hakan, ApJ, 876, 80
  4. THEMIS Observations of Particle Acceleration by a Magnetosheath Jet-Driven Bow Wave [20]
    Liu, Terry Z., Hietala, Heli, Angelopoulos, Vassilis, Omelchenko, Yuri, Roytershteyn, Vadim & Vainio, Rami, Geophysical Research Letters, 46, 7929
  5. FORESAIL-1 CubeSat Mission to Measure Radiation Belt Losses and Demonstrate Deorbiting [24]
    Palmroth, M., Praks, J., Vainio, R., Janhunen, P., Kilpua, E. K. J., Afanasiev, A., Ala-Lahti, M., Alho, A., Asikainen, T., Asvestari, E., Battarbee, M., Binios, A., Bosser, A., Brito, T., Dubart, M., Envall, J., Ganse, U., Ganushkina, N. Yu., George, H., Gieseler, J., Good, S., Grandin, M., Haslam, S., Hedman, H. -P., Hietala, H., Jovanovic, N., Kakakhel, S., Kalliokoski, M., Kettunen, V. V., Koskela, T., Lumme, E., Meskanen, M., Morosan, D., Mughal, M. Rizwan, Niemelä, P., Nyman, S., Oleynik, P., Osmane, A., Palmerio, E., Peltonen, J., Pfau-Kempf, Y., Plosila, J., Polkko, J., Poluianov, S., Pomoell, J., Price, D., Punkkinen, A., Punkkinen, R., Riwanto, B., Salomaa, L., Slavinskis, A., Säntti, T., Tammi, J., Tenhunen, H., Toivanen, P., Tuominen, J., Turc, L., Valtonen, E., Virtanen, P. & Westerlund, T., Journal of Geophysical Research (Space Physics), 124, 5783

2018

  1. Modelling of proton acceleration in application to a ground level enhancement [34]
    Afanasiev, A., Vainio, R., Rouillard, A. P., Battarbee, M., Aran, A. & Zucca, P., A&A, 614, A4
  2. Cavitons and spontaneous hot flow anomalies in a hybrid-Vlasov global magnetospheric simulation [15]
    Blanco-Cano, Xochitl, Battarbee, Markus, Turc, Lucile, Dimmock, Andrew P., Kilpua, Emilia K. J., Hoilijoki, Sanni, Ganse, Urs, Sibeck, David G., Cassak, Paul A., Fear, Robert C., Jarvinen, Riku, Juusola, Liisa, Pfau-Kempf, Yann, Vainio, Rami & Palmroth, Minna, Annales Geophysicae, 36, 1081
  3. Ion Acceleration by Flux Transfer Events in the Terrestrial Magnetosheath [16]
    Jarvinen, R., Vainio, R., Palmroth, M., Juusola, L., Hoilijoki, S., Pfau-Kempf, Y., Ganse, U., Turc, L. & von Alfthan, S., Geophysical Research Letters, 45, 1723
  4. Updated Model of the Solar Energetic Proton Environment in Space [39]
    Jiggens, Piers, Heynderickx, Daniel, Sandberg, Ingmar, Truscott, Pete, Raukunen, Osku & Vainio, Rami, Journal of Space Weather and Space Climate, 8, A31
  5. First Analysis of Ground-Level Enhancement (GLE) 72 on 10 September 2017: Spectral and Anisotropy Characteristics [53]
    Mishev, A., Usoskin, I., Raukunen, O., Paassilta, M., Valtonen, E., Kocharov, L. & Vainio, R., Solar Physics, 293, 136
  6. Catalogue of {>} 55 MeV Wide-longitude Solar Proton Events Observed by SOHO, ACE, and the STEREOs at {≈} 1 AU During 2009 - 2016 [32]
    Paassilta, Miikka, Papaioannou, Athanasios, Dresing, Nina, Vainio, Rami, Valtonen, Eino & Heber, Bernd, Solar Physics, 293, 70
  7. Nowcasting Solar Energetic Particle Events Using Principal Component Analysis [31]
    Papaioannou, A., Anastasiadis, A., Kouloumvakos, A., Paassilta, M., Vainio, R., Valtonen, E., Belov, A., Eroshenko, E., Abunina, M. & Abunin, A., Solar Physics, 293, 100
  8. On the Importance of Spatial and Velocity Resolution in the Hybrid-Vlasov Modeling of Collisionless Shocks [24]
    Pfau-Kempf, Yann, Battarbee, Markus, Ganse, Urs, Hoilijoki, Sanni, Turc, Lucile, von Alfthan, Sebastian, Vainio, Rami & Palmroth, Minna, Frontiers in Physics, 6, 44
  9. Two solar proton fluence models based on ground level enhancement observations [59]
    Raukunen, Osku, Vainio, Rami, Tylka, Allan J., Dietrich, William F., Jiggens, Piers, Heynderickx, Daniel, Dierckxsens, Mark, Crosby, Norma, Ganse, Urs & Siipola, Robert, Journal of Space Weather and Space Climate, 8, A04
  10. Analytical treatment of particle motion in circularly polarized slab-mode wave fields [1]
    Schreiner, Cedric, Vainio, Rami & Spanier, Felix, Journal of Plasma Physics, 84, 905840104
  11. Particle Acceleration Mechanisms [12]
    Vainio, Rami & Afanasiev, Alexandr, Solar Particle Radiation Storms Forecasting and Analysis (Editors: Malandraki, Olga E. & Crosby, Norma B.), Astrophysics and Space Science Library, 444, p. 45

2017

  1. Investigating the Origins of Two Extreme Solar Particle Events: Proton Source Profile and Associated Electromagnetic Emissions [34]
    Kocharov, Leon, Pohjolainen, Silja, Mishev, Alexander, Reiner, Mike J., Lee, Jeongwoo, Laitinen, Timo, Didkovsky, Leonid V., Pizzo, Victor J., Kim, Roksoon, Klassen, Andreas, Karlicky, Marian, Cho, Kyung-Suk, Gary, Dale E., Usoskin, Ilya, Valtonen, Eino & Vainio, Rami, ApJ, 839, 79
  2. Catalogue of 55-80 MeV solar proton events extending through solar cycles 23 and 24 [42]
    Paassilta, Miikka, Raukunen, Osku, Vainio, Rami, Valtonen, Eino, Papaioannou, Athanasios, Siipola, Robert, Riihonen, Esa, Dierckxsens, Mark, Crosby, Norma, Malandraki, Olga, Heber, Bernd & Klein, Karl-Ludwig, Journal of Space Weather and Space Climate, 7, A14
  3. Tail reconnection in the global magnetospheric context: Vlasiator first results [21]
    Palmroth, Minna, Hoilijoki, Sanni, Juusola, Liisa, Pulkkinen, Tuija I., Hietala, Heli, Pfau-Kempf, Yann, Ganse, Urs, von Alfthan, Sebastian, Vainio, Rami & Hesse, Michael, Annales Geophysicae, 35, 1269
  4. Why is solar cycle 24 an inefficient producer of high-energy particle events? [24]
    Vainio, Rami, Raukunen, Osku, Tylka, Allan J., Dietrich, William F. & Afanasiev, Alexandr, A&A, 604, A47

2016

  1. Mirror modes in the Earth's magnetosheath: Results from a global hybrid-Vlasov simulation [28]
    Hoilijoki, Sanni, Palmroth, Minna, Walsh, Brian M., Pfau-Kempf, Yann, von Alfthan, Sebastian, Ganse, Urs, Hannuksela, Otto & Vainio, Rami, Journal of Geophysical Research (Space Physics), 121, 4191
  2. Determining Pitch-angle Diffusion Coefficients from Test Particle Simulations [9]
    Ivascenko, Alex, Lange, Sebastian, Spanier, Felix & Vainio, Rami, ApJ, 833, 223
  3. A small mission concept to the Sun-Earth Lagrangian L5 point for innovative solar, heliospheric and space weather science [30]
    Lavraud, B., Liu, Y., Segura, K., He, J., Qin, G., Temmer, M., Vial, J. -C., Xiong, M., Davies, J. A., Rouillard, A. P., Pinto, R., Auchère, F., Harrison, R. A., Eyles, C., Gan, W., Lamy, P., Xia, L., Eastwood, J. P., Kong, L., Wang, J., Wimmer-Schweingruber, R. F., Zhang, S., Zong, Q., Soucek, J., An, J., Prech, L., Zhang, A., Rochus, P., Bothmer, V., Janvier, M., Maksimovic, M., Escoubet, C. P., Kilpua, E. K. J., Tappin, J., Vainio, R., Poedts, S., Dunlop, M. W., Savani, N., Gopalswamy, N., Bale, S. D., Li, G., Howard, T., DeForest, C., Webb, D., Lugaz, N., Fuselier, S. A., Dalmasse, K., Tallineau, J., Vranken, D. & Fernández, J. G., Journal of Atmospheric and Solar-Terrestrial Physics, 146, 171
  4. Iron-rich solar particle events measured by SOHO/ERNE during two solar cycles [3]
    Raukunen, O., Valtonen, E. & Vainio, R., A&A, 589, A138
  5. Deriving the Properties of Coronal Pressure Fronts in 3D: Application to the 2012 May 17 Ground Level Enhancement [91]
    Rouillard, A. P., Plotnikov, I., Pinto, R. F., Tirole, M., Lavarra, M., Zucca, P., Vainio, R., Tylka, A. J., Vourlidas, A., De Rosa, M. L., Linker, J., Warmuth, A., Mann, G., Cohen, C. M. S. & Mewaldt, R. A., ApJ, 833, 45
  6. Turbulence Heating ObserveR - satellite mission proposal [44]
    Vaivads, A., Retinò, A., Soucek, J., Khotyaintsev, Yu. V., Valentini, F., Escoubet, C. P., Alexandrova, O., André, M., Bale, S. D., Balikhin, M., Burgess, D., Camporeale, E., Caprioli, D., Chen, C. H. K., Clacey, E., Cully, C. M., de Keyser, J., Eastwood, J. P., Fazakerley, A. N., Eriksson, S., Goldstein, M. L., Graham, D. B., Haaland, S., Hoshino, M., Ji, H., Karimabadi, H., Kucharek, H., Lavraud, B., Marcucci, F., Matthaeus, W. H., Moore, T. E., Nakamura, R., Narita, Y., Nemecek, Z., Norgren, C., Opgenoorth, H., Palmroth, M., Perrone, D., Pinçon, J. -L., Rathsman, P., Rothkaehl, H., Sahraoui, F., Servidio, S., Sorriso-Valvo, L., Vainio, R., Vörös, Z. & Wimmer-Schweingruber, R. F., Journal of Plasma Physics, 82, 905820501

2015

  1. Self-consistent Monte Carlo simulations of proton acceleration in coronal shocks: Effect of anisotropic pitch-angle scattering of particles [37]
    Afanasiev, A., Battarbee, M. & Vainio, R., A&A, 584, A81
  2. Solar Interacting Protons Versus Interplanetary Protons in the Core Plus Halo Model of Diffusive Shock Acceleration and Stochastic Re-acceleration [17]
    Kocharov, L., Laitinen, T., Vainio, R., Afanasiev, A., Mursula, K. & Ryan, J. M., ApJ, 806, 80
  3. ULF foreshock under radial IMF: THEMIS observations and global kinetic simulation Vlasiator results compared [44]
    Palmroth, M., Archer, M., Vainio, R., Hietala, H., Pfau-Kempf, Y., Hoilijoki, S., Hannuksela, O., Ganse, U., Sandroos, A., von Alfthan, S. & Eastwood, J. P., Journal of Geophysical Research (Space Physics), 120, 8782

2014

  1. The Effect of Stochastic Re-acceleration on the Energy Spectrum of Shock-accelerated Protons [20]
    Afanasiev, Alexandr, Vainio, Rami & Kocharov, Leon, ApJ, 790, 36
  2. Release timescales of solar energetic particles in the low corona [28]
    Agueda, N., Klein, K. -L., Vilmer, N., Rodríguez-Gasén, R., Malandraki, O. E., Papaioannou, A., Subirà, M., Sanahuja, B., Valtonen, E., Dröge, W., Nindos, A., Heber, B., Braune, S., Usoskin, I. G., Heynderickx, D., Talew, E. & Vainio, R., A&A, 570, A5
  3. Fundamental and harmonic plasma emission in different plasma environments [12]
    Ganse, U., Kilian, P., Spanier, F. & Vainio, R., A&A, 564, A15
  4. Transmission and Emission of Solar Energetic Particles in Semi-transparent Shocks [5]
    Kocharov, Leon, Laitinen, Timo, Usoskin, Ilya & Vainio, Rami, ApJ, 787, L21
  5. SEPServer catalogues of solar energetic particle events at 1 AU based on STEREO recordings: 2007-2012 [15]
    Papaioannou, A., Malandraki, O. E., Dresing, N., Heber, B., Klein, K. -L., Vainio, R., Rodríguez-Gasén, R., Klassen, A., Nindos, A., Heynderickx, D., Mewaldt, R. A., Gómez-Herrero, R., Vilmer, N., Kouloumvakos, A., Tziotziou, K. & Tsiropoula, G., A&A, 569, A96
  6. A semi-analytical foreshock model for energetic storm particle events inside 1 AU [29]
    Vainio, Rami, Pönni, Arttu, Battarbee, Markus, Koskinen, Hannu E. J., Afanasiev, Alexandr & Laitinen, Timo, Journal of Space Weather and Space Climate, 4, A08

2013

  1. Monte Carlo Simulation Model of Energetic Proton Transport through Self-generated Alfvén Waves [12]
    Afanasiev, A. & Vainio, R., ApJS, 207, 29
  2. Current Sheet Regulation of Solar Near-relativistic Electron Injection Histories [3]
    Agueda, N., Vainio, R., Dalla, S., Lario, D. & Sanahuja, B., ApJ, 765, 83
  3. On the parametrization of the energetic-particle pitch-angle diffusion coefficient [18]
    Agueda, Neus & Vainio, Rami, Journal of Space Weather and Space Climate, 3, A10
  4. Analysis of the substructure within a complex magnetic cloud on 3-4 September 2008 [3]
    Andreeova, K., Kilpua, E. K. J., Hietala, H., Koskinen, H. E. J., Isavnin, A. & Vainio, R., Annales Geophysicae, 31, 555
  5. Injection of thermal and suprathermal seed particles into coronal shocks of varying obliquity [28]
    Battarbee, M., Vainio, R., Laitinen, T. & Hietala, H., A&A, 558, A110
  6. Interpreting Solar EUV Wave Observations from Different Viewing Angles Using an MHD Model [10]
    Hoilijoki, S., Pomoell, J., Vainio, R., Palmroth, M. & Koskinen, H. E. J., Solar Physics, 286, 493
  7. Forecasting the Earth's radiation belts and modelling solar energetic particle events: Recent results from SPACECAST [22]
    Horne, Richard B., Glauert, Sarah A., Meredith, Nigel P., Koskinen, Hannu, Vainio, Rami, Afanasiev, Alexandr, Ganushkina, Natalia Y., Amariutei, Olga A., Boscher, Daniel, Sicard, Angelica, Maget, Vincent, Poedts, Stefaan, Jacobs, Carla, Sanahuja, Blai, Aran, Angels, Heynderickx, Daniel & Pitchford, David, Journal of Space Weather and Space Climate, 3, A20
  8. The Effect of Turbulence Intermittence on the Emission of Solar Energetic Particles by Coronal and Interplanetary Shocks [5]
    Kocharov, Leon, Laitinen, Timo & Vainio, Rami, ApJ, 778, L5
  9. Particle scattering in turbulent plasmas with amplified wave modes [20]
    Lange, S., Spanier, F., Battarbee, M., Vainio, R. & Laitinen, T., A&A, 553, A129
  10. Ion distributions upstream and downstream of the Earth's bow shock: first results from Vlasiator [19]
    Pokhotelov, D., von Alfthan, S., Kempf, Y., Vainio, R., Koskinen, H. E. J. & Palmroth, M., Annales Geophysicae, 31, 2207
  11. The first SEPServer event catalogue ~68-MeV solar proton events observed at 1 AU in 1996-2010 [86]
    Vainio, Rami, Valtonen, Eino, Heber, Bernd, Malandraki, Olga E., Papaioannou, Athanasios, Klein, Karl-Ludwig, Afanasiev, Alexander, Agueda, Neus, Aurass, Henry, Battarbee, Markus, Braune, Stephan, Dröge, Wolfgang, Ganse, Urs, Hamadache, Clarisse, Heynderickx, Daniel, Huttunen-Heikinmaa, Kalle, Kiener, Jürgen, Kilian, Patrick, Kopp, Andreas, Kouloumvakos, Athanasios, Maisala, Sami, Mishev, Alexander, Miteva, Rositsa, Nindos, Alexander, Oittinen, Tero, Raukunen, Osku, Riihonen, Esa, Rodríguez-Gasén, Rosa, Saloniemi, Oskari, Sanahuja, Blai, Scherer, Renate, Spanier, Felix, Tatischeff, Vincent, Tziotziou, Kostas, Usoskin, Ilya G. & Vilmer, Nicole, Journal of Space Weather and Space Climate, 3, A12
  12. Solar activity and its evolution across the corona: recent advances [12]
    Zuccarello, Francesca, Balmaceda, Laura, Cessateur, Gael, Cremades, Hebe, Guglielmino, Salvatore L., Lilensten, Jean, Dudok de Wit, Thierry, Kretzschmar, Matthieu, Lopez, Fernando M., Mierla, Marilena, Parenti, Susanna, Pomoell, Jens, Romano, Paolo, Rodriguez, Luciano, Srivastava, Nandita, Vainio, Rami, West, Matt & Zuccarello, Francesco P., Journal of Space Weather and Space Climate, 3, A18

2012

  1. Multi-spacecraft Study of the 8 November 2000 SEP Event: Electron Injection Histories 100° Apart [9]
    Agueda, N., Lario, D., Ontiveros, V., Kilpua, E., Sanahuja, B. & Vainio, R., Solar Physics, 281, 319
  2. A Database of >20 keV Electron Green's Functions of Interplanetary Transport at 1 AU [16]
    Agueda, N., Vainio, R. & Sanahuja, B., ApJS, 202, 18
  3. Emission of Type II Radio Bursts - Single-Beam Versus Two-Beam Scenario [43]
    Ganse, U., Kilian, P., Vainio, R. & Spanier, F., Solar Physics, 280, 551
  4. Nonlinear Wave Interactions as Emission Process of Type II Radio Bursts [29]
    Ganse, Urs, Kilian, Patrick, Spanier, Felix & Vainio, Rami, ApJ, 751, 145
  5. Particle Acceleration in Shock-Shock Interaction: Model to Data Comparison [10]
    Hietala, H., Sandroos, A. & Vainio, R., ApJ, 751, L14
  6. Non-standard Energy Spectra of Shock-accelerated Solar Particles [12]
    Kocharov, Leon, Vainio, Rami, Pomoell, Jens, Valtonen, Eino, Klassen, Andreas & Young, C. Alex, ApJ, 753, 87
  7. Scientific Analysis within SEPServer - New Perspectives in Solar Energetic Particle Research: The Case Study of the 13 July 2005 Event [22]
    Malandraki, O. E., Agueda, N., Papaioannou, A., Klein, K. -L., Valtonen, E., Heber, B., Dröge, W., Aurass, H., Nindos, A., Vilmer, N., Sanahuja, B., Kouloumvakos, A., Braune, S., Preka-Papadema, P., Tziotziou, K., Hamadache, C., Kiener, J., Tatischeff, V., Riihonen, E., Kartavykh, Y., Rodríguez-Gasén, R. & Vainio, R., Solar Physics, 281, 333
  8. Influence of Solar Wind Heating Formulations on the Properties of Shocks in the Corona [31]
    Pomoell, J. & Vainio, R., ApJ, 745, 151

2011

  1. Heavy-ion acceleration and self-generated waves in coronal shocks [23]
    Battarbee, M., Laitinen, T. & Vainio, R., A&A, 535, A34
  2. Heavy Ion Aacceleration and Self-Generated Waves in Coronal Shocks Flares and Coronal Mass Ejections [0]
    Battarbee, Markus, International Cosmic Ray Conference, International Cosmic Ray Conference, 10, p. 92
  3. Kinetic Simulations of Type II Radio Burst Emission Processes [1]
    Ganse, Urs, Spanier, Felix & Vainio, Rami, Advances in Plasma Astrophysics (Editors: Bonanno, Alfio, de Gouveia Dal Pino, Elisabete & Kosovichev, Alexander G.), IAU Symposium, 274, p. 470
  4. Fundamental Processes of Radio Emissions from CME shocks [1]
    Ganse, Urs, International Cosmic Ray Conference, International Cosmic Ray Conference, 10, p. 108
  5. In situ observations of particle acceleration in shock-shock interaction [13]
    Hietala, H., Agueda, N., AndréEová, K., Vainio, R., Nylund, S., Kilpua, E. K. J. & Koskinen, H. E. J., Journal of Geophysical Research (Space Physics), 116, A10105
  6. Hybrid model of solar energetic particle acceleration and transport [0]
    Kocharov, Leon, International Cosmic Ray Conference, International Cosmic Ray Conference, 10, p. 71
  7. Cutoff rigidities for Mercury-orbiting spacecraft [2]
    Laurenza, Monica, International Cosmic Ray Conference, International Cosmic Ray Conference, 11, p. 436
  8. Aalto-1: a hyperspectral Earth observing nanosatellite [1]
    Näsilä, Antti, Hakkarainen, Anssi, Praks, Jaan, Kestilä, Antti, Nordling, Kalle, Modrzewski, Rafal, Saari, Heikki, Antila, Jarkko, Mannila, Rami, Janhunen, Pekka, Vainio, Rami & Hallikainen, Martti, Sensors, Systems, and Next-Generation Satellites XV (Editors: Meynart, Roland, Neeck, Steven P. & Shimoda, Haruhisa), Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series, 8176, p. 81760C
  9. MHD simulation of the evolution of shock structures in the solar corona: implications for coronal shock acceleration [18]
    Pomoell, J., Vainio, R. & Kissmann, R., Astrophysics and Space Sciences Transactions, 7, 387
  10. A note on using thermally driven solar wind models in MHD space weather simulations [2]
    Pomoell, Jens & Vainio, Rami, Advances in Plasma Astrophysics (Editors: Bonanno, Alfio, de Gouveia Dal Pino, Elisabete & Kosovichev, Alexander G.), IAU Symposium, 274, p. 102
  11. Weak turbulence theory of dispersive waves in the solar corona [0]
    Spanier, Felix & Vainio, Rami, Advances in Plasma Astrophysics (Editors: Bonanno, Alfio, de Gouveia Dal Pino, Elisabete & Kosovichev, Alexander G.), IAU Symposium, 274, p. 133
  12. Sun, Corona and Transient Phenomena in the Heliosphere [0]
    Vainio, Rami, International Cosmic Ray Conference, International Cosmic Ray Conference, 11, p. 227

2010

  1. On the interaction of solar near-relativistic electrons with back-scatter regions beyond 1 AU [2]
    Agueda, N., Vainio, R., Lario, D. & Sanahuja, B., Twelfth International Solar Wind Conference (Editors: Maksimovic, M., Issautier, K., Meyer-Vernet, N., Moncuquet, M. & Pantellini, F.), American Institute of Physics Conference Series, 1216, p. 596
  2. Solar near-relativistic electron observations as a proof of a back-scatter region beyond 1 AU during the 2000 February 18 event [10]
    Agueda, N., Vainio, R., Lario, D. & Sanahuja, B., A&A, 519, A36
  3. Acceleration of Energetic Particles Through Self-Generated Waves in a Decelerating Coronal Shock [2]
    Battarbee, M., Laitinen, T., Vainio, R. & Agueda, N., Twelfth International Solar Wind Conference (Editors: Maksimovic, M., Issautier, K., Meyer-Vernet, N., Moncuquet, M. & Pantellini, F.), American Institute of Physics Conference Series, 1216, p. 84
  4. Kinetic Simulations of Solar Type II Radio Burst Emission Processes [1]
    Ganse, Urs, Burkart, Thomas, Spanier, Felix & Vainio, Rami, Twelfth International Solar Wind Conference (Editors: Maksimovic, M., Issautier, K., Meyer-Vernet, N., Moncuquet, M. & Pantellini, F.), American Institute of Physics Conference Series, 1216, p. 245
  5. Solar Intensity X-ray and particle Spectrometer (SIXS) [20]
    Huovelin, J., Vainio, R., Andersson, H., Valtonen, E., Alha, L., Mälkki, A., Grande, M., Fraser, G. W., Kato, M., Koskinen, H., Muinonen, K., Näränen, J., Schmidt, W., Syrjäsuo, M., Anttila, M., Vihavainen, T., Kiuru, E., Roos, M., Peltonen, J., Lehti, J., Talvioja, M., Portin, P. & Prydderch, M., Planetary and Space Science, 58, 96
  6. Observation-based Analysis of the Deflection of a Polar Crown Filament Eruption [2]
    Pomoell, J., Vainio, R. & Kilpua, E. K. J., Twelfth International Solar Wind Conference (Editors: Maksimovic, M., Issautier, K., Meyer-Vernet, N., Moncuquet, M. & Pantellini, F.), American Institute of Physics Conference Series, 1216, p. 335

2009

  1. Modeling solar near-relativistic electron events. Insights into solar injection and interplanetary transport conditions [26]
    Agueda, N., Lario, D., Vainio, R., Sanahuja, B., Kilpua, E. & Pohjolainen, S., A&A, 507, 981
  2. The influence of in situ pitch-angle cosine coverage on the derivation of solar energetic particle injection and interplanetary transport conditions [11]
    Agueda, Neus, Vainio, Rami, Lario, David & Sanahuja, Blai, Advances in Space Research, 44, 794
  3. Radiation hardness studies of CdTe and HgI2 for the SIXS particle detector on-board the BepiColombo spacecraft [2]
    Ahoranta, J., Uunila, M., Huovelin, J., Andersson, H., Vainio, R., Virtanen, A. & Kettunen, H., Nuclear Instruments and Methods in Physics Research A, 605, 344
  4. Supermagnetosonic Jets behind a Collisionless Quasiparallel Shock [134]
    Hietala, H., Laitinen, T. V., Andréeová, K., Vainio, R., Vaivads, A., Palmroth, M., Pulkkinen, T. I., Koskinen, H. E. J., Lucek, E. A. & Rème, H., Physical Review Letters, 103, 245001
  5. STEREO observations of interplanetary coronal mass ejections and prominence deflection during solar minimum period [117]
    Kilpua, E. K. J., Pomoell, J., Vourlidas, A., Vainio, R., Luhmann, J., Li, Y., Schroeder, P., Galvin, A. B. & Simunac, K., Annales Geophysicae, 27, 4491
  6. Fragmented type II burst emission during CME liftoff [0]
    Pohjolainen, Silja, Pomoell, Jens & Vainio, Rami, Universal Heliophysical Processes (Editors: Gopalswamy, N. & Webb, D. F.), IAU Symposium, 257, p. 357
  7. Reacceleration of Flare Ions in Coronal and Interplanetary Shock Waves [13]
    Sandroos, A. & Vainio, R., ApJS, 181, 183
  8. Diffusive shock acceleration to relativistic energies in the solar corona [33]
    Sandroos, A. & Vainio, R., A&A, 507, L21
  9. History of cosmic ray research in Finland [1]
    Usoskin, I. G., Valtonen, E., Vainio, R., Tanskanen, P. J. & Aurela, A. M., Advances in Space Research, 44, 1232
  10. Dynamics of the Earth's Particle Radiation Environment [167]
    Vainio, Rami, Desorgher, Laurent, Heynderickx, Daniel, Storini, Marisa, Flückiger, Erwin, Horne, Richard B., Kovaltsov, Gennady A., Kudela, Karel, Laurenza, Monica, McKenna-Lawlor, Susan, Rothkaehl, Hanna & Usoskin, Ilya G., Space Science Reviews, 147, 187
  11. Radiation Tolerance Tests of Small-Sized CsI(Tl) Scintillators Coupled to Photodiodes [4]
    Valtonen, E., Peltonen, J., Dudnik, O. V., Kudin, A. M., Andersson, H., Borodenko, Yu. A., Eronen, T., Huovelin, J., Kettunen, H., Kurbatov, E. V., Lehti, J., Nenonen, S., Rossi, M., Vainio, R. & Virtanen, A., IEEE Transactions on Nuclear Science, 56, 2149
  12. The State of Space Weather Scientific Modeling—An Introduction [8]
    Watermann, J., Vainio, R., Lilensten, J., Belehaki, A. & Messerotti, M., Space Science Reviews, 147, 111

2008

  1. Injection and Interplanetary Transport of Near-Relativistic Electrons: Modeling the Impulsive Event on 2000 May 1 [48]
    Agueda, N., Vainio, R., Lario, D. & Sanahuja, B., ApJ, 675, 1601
  2. Sources of SEP Acceleration during a Flare - CME Event [7]
    Lehtinen, N. J., Pohjolainen, S., Huttunen-Heikinmaa, K., Vainio, R., Valtonen, E. & Hillaris, A. E., Solar Physics, 247, 151
  3. CME liftoff with high-frequency fragmented type II burst emission [26]
    Pohjolainen, S., Pomoell, J. & Vainio, R., A&A, 490, 357
  4. MHD Modeling of Coronal Large-Amplitude Waves Related to CME Lift-off [49]
    Pomoell, J., Vainio, R. & Kissmann, R., Solar Physics, 253, 249
  5. Simulations of coronal shock acceleration in self-generated turbulence [27]
    Vainio, R. & Laitinen, T., Journal of Atmospheric and Solar-Terrestrial Physics, 70, 467

2007

  1. Solar intensity X-ray spectrometer (SIXS) ASIC for a large dynamic range onboard BepiColombo ESA mission to Mercury [0]
    Khalid, Farah F., Prydderch, Mark L., Morrissey, Quentin, Seller, Paul, Valtonen, Eino, Peltonen, Juhani, Anttila, Matti, Malkki, Anssi, Vainio, Rami & Huovelin, Juhani, Nuclear Science Symposium Conference Record, 2, p. 1082
  2. Solar wind-magnetosphere coupling efficiency for solar wind pressure impulses [14]
    Palmroth, M., Partamies, N., Polvi, J., Pulkkinen, T. I., McComas, D. J., Barnes, R. J., Stauning, P., Smith, C. W., Singer, H. J. & Vainio, R., Geophysical Research Letters, 34, L11101
  3. Simulation Results for Heavy Ion Spectral Variability in Large Gradual Solar Energetic Particle Events [40]
    Sandroos, A. & Vainio, R., ApJ, 662, L127
  4. Monte Carlo Simulations of Coronal Diffusive Shock Acceleration in Self-generated Turbulence [78]
    Vainio, R. & Laitinen, T., ApJ, 658, 622
  5. Turbulence transport and shock acceleration in solar corona [0]
    Vainio, R. & Laitinen, T., Turbulence and Nonlinear Processes in Astrophysical Plasmas (Editors: Shaikh, Dastgeer & Zank, Gary P.), American Institute of Physics Conference Series, 932, p. 350

2006

  1. Density fluctuations and polarization features of magnetohydrodynamic waves [3]
    Dogan, A., Spanier, F., Vainio, R. & Schlickeiser, R., Journal of Plasma Physics, 72, 419
  2. CME Theory and Models [409]
    Forbes, T. G., Linker, J. A., Chen, J., Cid, C., Kóta, J., Lee, M. A., Mann, G., Mikić, Z., Potgieter, M. S., Schmidt, J. M., Siscoe, G. L., Vainio, R., Antiochos, S. K. & Riley, P., Space Science Reviews, 123, 251
  3. Multi-Wavelength Observations of CMEs and Associated Phenomena. Report of Working Group F [62]
    Pick, M., Forbes, T. G., Mann, G., Cane, H. V., Chen, J., Ciaravella, A., Cremades, H., Howard, R. A., Hudson, H. S., Klassen, A., Klein, K. L., Lee, M. A., Linker, J. A., Maia, D., Mikic, Z., Raymond, J. C., Reiner, M. J., Simnett, G. M., Srivastava, N., Tripathi, D., Vainio, R., Vourlidas, A., Zhang, J., Zurbuchen, T. H., Sheeley, N. R. & Marqué, C., Space Science Reviews, 123, 341
  4. Particle acceleration at shocks propagating in inhomogeneous magnetic fields [30]
    Sandroos, A. & Vainio, R., A&A, 455, 685
  5. Turbulence transmission in parallel relativistic shocks using ray tracing [7]
    Tammi, J. & Vainio, R., A&A, 460, 23

2005

  1. Modeling the Shock Aftermath Source of Energetic Particles in the Solar Corona [21]
    Kocharov, Leon, Lytova, Marianna, Vainio, Rami, Laitinen, Timo & Torsti, Jarmo, ApJ, 620, 1052
  2. Evolution of Alfvén waves by three-wave interactions in super-Alfvénic shocks [7]
    Vainio, R. & Spanier, F., A&A, 437, 1
  3. Particle acceleration in thick parallel shocks with high compression ratio [10]
    Virtanen, J. J. P. & Vainio, R., A&A, 439, 461
  4. Stochastic Acceleration in Relativistic Parallel Shocks [80]
    Virtanen, Joni J. P. & Vainio, Rami, ApJ, 621, 313
  5. Stochastic particle acceleration in parallel relativistic shocks [0]
    Virtanen, Joni J. P. & Vainio, Rami, Astrophysical Sources of High Energy Particles and Radiation (Editors: Bulik, Tomasz, Rudak, Bronislaw & Madejski, Grzegorz), American Institute of Physics Conference Series, 801, p. 410
  6. Acceleration of electrons in highly compressed modified shocks [0]
    Virtanen, Joni J. P. & Vainio, Rami, Astrophysical Sources of High Energy Particles and Radiation (Editors: Bulik, Tomasz, Rudak, Bronislaw & Madejski, Grzegorz), American Institute of Physics Conference Series, 801, p. 408

2004

  1. Solar energetic particle event onset as analyzed from simulated data [69]
    Lintunen, J. & Vainio, R., A&A, 420, 343
  2. Proper motion analysis of the jet of R Aquarii [10]
    Mäkinen, K., Lehto, H. J., Vainio, R. & Johnson, D. R. H., A&A, 424, 157
  3. Conversion of bulk kinetic energy into radiation in AGNs and GRBs: Particle transport effects [11]
    Vainio, R., Pohl, M. & Schlickeiser, R., A&A, 414, 463
  4. Solar Energetic Particle Acceleration in Refracting Coronal Shock Waves [29]
    Vainio, Rami & Khan, Josef I., ApJ, 600, 451

2003

  1. Toward a self-consistent treatment of the cyclotron wave heating and acceleration of the solar wind plasma [11]
    Laitinen, T., Fichtner, H. & Vainio, R., Journal of Geophysical Research (Space Physics), 108, 1081
  2. The Influence of Electron Impact Ionization in the Relativistic Pickup of Interstellar Neutrals [12]
    Schlickeiser, R., Pohl, M. & Vainio, R., ApJ, 596, 840
  3. Alfvén-wave transmission and test-particle acceleration in parallel relativistic shocks [22]
    Vainio, R., Virtanen, J. J. P. & Schlickeiser, R., A&A, 409, 821

2000

  1. Charged-Particle Resonance Conditions and Transport Coefficients in Slab-Mode Waves [24]
    Vainio, R., ApJS, 131, 519

1996

  1. The 1990 May 24 solar flare and cosmic ray event [7]
    Kocharov, Leon, Kovaltsov, Gennadi, Torsti, Jarmo, Usoskin, Ilya, Zirin, Harold, Anttila, Antti & Vainio, Rami, High energy solar Physics (Editors: Ramaty, Reuven, Mandzhavidze, Natalie & Hua, Xin-Min), American Institute of Physics Conference Series, 374, p. 246


Created on Thu May 22 04:32:26 2025.