Publications of Emma E. Davies


A list of publications authored or co-authored by Emma E. Davies, 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: 0000-0001-9992-8471

List of publications ordered by citations
Number of papers: 38 (refereed: 35)
No. of citations: 518
First author papers: 7 (refereed: 7)

2025

  1. The Need for a Sub-L1 Space Weather Research Mission: Current Knowledge Gaps on Coronal Mass Ejections [0]
    Lugaz, Noé, Al-Haddad, Nada, Zhuang, Bin, Möstl, Christian, Davies, Emma E., Farrugia, Charles J., Banu, Sahanaj Aktar, Weiler, Eva & Galvin, Antoinette B., Space Weather, 23, 2024SW004189
  2. First Observations of a Geomagnetic Superstorm With a Sub-L1 Monitor [0]
    Weiler, E., Möstl, C., Davies, E. E., Veronig, A. M., Amerstorfer, U. V., Amerstorfer, T., Le Louëdec, J., Bauer, M., Lugaz, N., Haberle, V., Rüdisser, H. T., Majumdar, S. & Reiss, M., Space Weather, 23, 2024SW004260

2024

  1. Characterization of Small Flux Ropes Using Juno Spacecraft Cruise-phase Data [0]
    Banu, Sahanaj A., Winslow, Réka M., Scolini, Camilla, Davies, Emma E., Farrugia, Charles J., Murphy, Amy K., Lugaz, Noé & Al-Haddad, Nada, ApJ, 976, 79
  2. Flux Rope Modeling of the 2022 September 5 Coronal Mass Ejection Observed by Parker Solar Probe and Solar Orbiter from 0.07 to 0.69 au [6]
    Davies, Emma E., Rüdisser, Hannah T., Amerstorfer, Ute V., Möstl, Christian, Bauer, Maike, Weiler, Eva, Amerstorfer, Tanja, Majumdar, Satabdwa, Hess, Phillip, Weiss, Andreas J., Reiss, Martin A., Green, Lucie M., Long, David M., Nieves-Chinchilla, Teresa, Trotta, Domenico, Horbury, Timothy S., O'Brien, Helen, Fauchon-Jones, Edward, Morris, Jean, Owen, Christopher J., Bale, Stuart D. & Kasper, Justin C., ApJ, 973, 51
  3. Using Solar Orbiter as an Upstream Solar Wind Monitor for Real Time Space Weather Predictions [12]
    Laker, R., Horbury, T. S., O'Brien, H., Fauchon-Jones, E. J., Angelini, V., Fargette, N., Amerstorfer, T., Bauer, M., Möstl, C., Davies, E. E., Davies, J. A., Harrison, R., Barnes, D. & Dumbović, M., Space Weather, 22, e2023SW003628
  4. The Width of Magnetic Ejecta Measured near 1 au: Lessons from STEREO-A Measurements in 2021–2022 [13]
    Lugaz, Noé, Zhuang, Bin, Scolini, Camilla, Al-Haddad, Nada, Farrugia, Charles J., Winslow, Réka M., Regnault, Florian, Möstl, Christian, Davies, Emma E. & Galvin, Antoinette B., ApJ, 962, 193
  5. Discrepancies in the Properties of a Coronal Mass Ejection on Scales of 0.03 au as Revealed by Simultaneous Measurements at Solar Orbiter and Wind: The 2021 November 3–5 Event [18]
    Regnault, F., Al-Haddad, N., Lugaz, N., Farrugia, C. J., Yu, W., Zhuang, B. & Davies, E. E., ApJ, 962, 190
  6. A Community Data Set for Comparing Automated Coronal Hole Detection Schemes [3]
    Reiss, Martin A., Muglach, Karin, Mason, Emily, Davies, Emma E., Chakraborty, Shibaji, Delouille, Veronique, Downs, Cooper, Garton, Tadhg M., Grajeda, Jeremy A., Hamada, Amr, Heinemann, Stephan G., Hofmeister, Stefan, Illarionov, Egor, Jarolim, Robert, Krista, Larisza, Lowder, Chris, Verwichte, Erwin, Arge, Charles N., Boucheron, Laura E., Foullon, Claire, Kirk, Michael S., Kosovichev, Alexander, Leisner, Andrew, Möstl, Christian, Turtle, James & Veronig, Astrid, ApJS, 271, 6
  7. Understanding the Effects of Spacecraft Trajectories through Solar Coronal Mass Ejection Flux Ropes Using 3DCOREweb [3]
    Rüdisser, Hannah T., Weiss, Andreas J., Le Louëdec, Justin, Amerstorfer, Ute V., Möstl, Christian, Davies, Emma E. & Lammer, Helmut, ApJ, 973, 150
  8. A Survey of Coronal Mass Ejections Measured In Situ by Parker Solar Probe during 2018–2022 [6]
    Salman, Tarik Mohammad, Nieves-Chinchilla, Teresa, Jian, Lan K., Lugaz, Noé, Carcaboso, Fernando, Davies, Emma E. & Collado-Vega, Yaireska M., ApJ, 966, 118
  9. Properties of an Interplanetary Shock Observed at 0.07 and 0.7 au by Parker Solar Probe and Solar Orbiter [15]
    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
  10. Combining STEREO heliospheric imagers and Solar Orbiter to investigate the evolution of the 2022 March 10 CME [4]
    Zhuang, B., Lugaz, N., Al-Haddad, N., Scolini, C., Farrugia, C. J., Regnault, F., Davies, E. E., Yu, W., Winslow, R. M. & Galvin, A. B., A&A, 682, A107

2023

  1. Characterizing Interplanetary Coronal Mass Ejection-related Forbush Decreases at Mercury Using MESSENGER Observations: Identification of a One- or Two-step Structure [4]
    Davies, Emma E., Winslow, Réka M. & Lawrence, David J., ApJ, 943, 83
  2. The Effect of Magnetic Field Line Topology on ICME-related GCR Modulation [1]
    Davies, Emma E., Scolini, Camilla, Winslow, Réka M., Jordan, Andrew P. & Möstl, Christian, ApJ, 959, 133
  3. How Magnetic Reconnection May Affect the Coherence of Interplanetary Coronal Mass Ejections [4]
    Farrugia, C. J., Vasquez, B. J., Lugaz, N., Al-Haddad, N. A., Richardson, I. G., Davies, E. E., Winslow, R. M., Zhuang, B., Scolini, C., Torbert, R. B., Wilson, L. B., Regnault, F., Rogers, A., Galvin, A. B. & Yu, W., ApJ, 953, 15
  4. Heliophysics and space weather science at ∼1.5 AU: Knowledge gaps and need for space weather monitors at Mars [6]
    Lee, Christina O., Sánchez-Cano, Beatriz, DiBraccio, Gina A., Mayyasi, Majd, Xu, Shaosui, Chamberlin, Phillip, Davies, Emma, Scolini, Camilla, Filwett, Rachael J., Ramstad, Robin, Palmerio, Erika, Lynch, Benjamin J., Luhmann, Janet G., Ehresmann, Bent, Guo, Jingnan, Allen, Robert C., Vines, Sarah, Winslow, Réka & Elliott, Heather, Frontiers in Astronomy and Space Sciences, 10, 11
  5. The Eruption of a Magnetic Flux Rope Observed by Solar Orbiter and Parker Solar Probe [12]
    Long, David M., Green, Lucie M., Pecora, Francesco, Brooks, David H., Strecker, Hanna, Orozco-Suárez, David, Hayes, Laura A., Davies, Emma E., Amerstorfer, Ute V., Mierla, Marilena, Lario, David, Berghmans, David, Zhukov, Andrei N. & Rüdisser, Hannah T., ApJ, 955, 152
  6. Three Eruptions Observed by Remote Sensing Instruments Onboard Solar Orbiter [2]
    Mierla, Marilena, Cremades, Hebe, Andretta, Vincenzo, Chifu, Iulia, Zhukov, Andrei N., Susino, Roberto, Auchère, Frédéric, Vourlidas, Angelos, Talpeanu, Dana-Camelia, Rodriguez, Luciano, Janssens, Jan, Nicula, Bogdan, Aznar Cuadrado, Regina, Berghmans, David, Bemporad, Alessandro, D'Huys, Elke, Dolla, Laurent, Gissot, Samuel, Jerse, Giovanna, Kraaikamp, Emil, Long, David M., Mampaey, Benjamin, Möstl, Christian, Pagano, Paolo, Parenti, Susanna, West, Matthew J., Podladchikova, Olena, Romoli, Marco, Sasso, Clementina, Stegen, Koen, Teriaca, Luca, Thompson, William, Verbeeck, Cis & Davies, Emma, Solar Physics, 298, 42
  7. Redefining Flux Ropes in Heliophysics [3]
    Nieves-Chinchilla, Teresa, Pal, Sanchita, Salman, Tarik M., Carcaboso, Fernando, Guidoni, Silvina E., Cremades, Hebe, Narock, Ayris, Balmaceda, Laura A., Lynch, Benjamin J., Al-Haddad, Nada, Rodríguez-García, Laura, Narock, Thomas W., Dos Santos, Luiz F. G., Regnault, Florian, Kay, Christina, Winslow, Réka M., Palmerio, Erika, Davies, Emma E., Scolini, Camilla, Weiss, Andreas J., Alzate, Nathalia, Jeunon, Mariana & Pujadas, Roger, Frontiers in Astronomy and Space Sciences, 10, 56
  8. Investigating the Magnetic Structure of Interplanetary Coronal Mass Ejections Using Simultaneous Multispacecraft In Situ Measurements [11]
    Regnault, F., Al-Haddad, N., Lugaz, N., Farrugia, C. J., Yu, W., Davies, E. E., Galvin, A. B. & Zhuang, B., ApJ, 957, 49

2022

  1. Multi-spacecraft Observations of the Evolution of Interplanetary Coronal Mass Ejections between 0.3 and 2.2 au: Conjunctions with the Juno Spacecraft [19]
    Davies, Emma E., Winslow, Réka M., Scolini, Camilla, Forsyth, Robert J., Möstl, Christian, Lugaz, Noé & Galvin, Antoinette B., ApJ, 933, 127
  2. Successive Interacting Coronal Mass Ejections: How to Create a Perfect Storm [21]
    Koehn, G. J., Desai, R. T., Davies, E. E., Forsyth, R. J., Eastwood, J. P. & Poedts, S., ApJ, 941, 139
  3. Coronal Mass Ejections Observed In Situ by STEREO-A in 2021: Multi-spacecraft Measurements [0]
    Lugaz, Noé, Zhuang, Bin, Salman, Tarik Mohammad, Al-Haddad, Nada, Winslow, Reka, Scolini, Camilla, Farrugia, Charles, Regnault, Florian, Yu, Wenyuan, Davies, Emma, Moestl, Christian & Galvin, Antoinette, 44th COSPAR Scientific Assembly. Held 16-24 July, 44, p. 2440
  4. A Coronal Mass Ejection and Magnetic Ejecta Observed In Situ by STEREO-A and Wind at 55° Angular Separation [21]
    Lugaz, Noé, Salman, Tarik M., Zhuang, Bin, Al-Haddad, Nada, Scolini, Camilla, Farrugia, Charles J., Yu, Wenyuan, Winslow, Réka M., Möstl, Christian, Davies, Emma E. & Galvin, Antoinette B., ApJ, 929, 149
  5. Multipoint Interplanetary Coronal Mass Ejections Observed with Solar Orbiter, BepiColombo, Parker Solar Probe, Wind, and STEREO-A [40]
    Möstl, Christian, Weiss, Andreas J., Reiss, Martin A., Amerstorfer, Tanja, Bailey, Rachel L., Hinterreiter, Jürgen, Bauer, Maike, Barnes, David, Davies, Jackie A., Harrison, Richard A., Freiherr von Forstner, Johan L., Davies, Emma E., Heyner, Daniel, Horbury, Tim & Bale, Stuart D., ApJ, 924, L6
  6. Causes and Consequences of Magnetic Complexity Changes within Interplanetary Coronal Mass Ejections: A Statistical Study [23]
    Scolini, Camilla, Winslow, Réka M., Lugaz, Noé, Salman, Tarik M., Davies, Emma E. & Galvin, Antoinette B., ApJ, 927, 102
  7. On the importance of investigating ICME complexity evolution during propagation [0]
    Winslow, Reka, Scolini, Camilla, Davies, Emma & Lugaz, Noé, 44th COSPAR Scientific Assembly. Held 16-24 July, 44, p. 2442
  8. On the importance of investigating CME complexity evolution during interplanetary propagation [10]
    Winslow, Réka M., Scolini, Camilla, Jian, Lan K., Nieves-Chinchilla, Teresa, Temmer, Manuela, Carcaboso, Fernando, Schmieder, Brigitte, Poedts, Stefaan, Lynch, Benjamin J., Wood, Brian E., Palmerio, Erika, Lugaz, Noé, Farrugia, Charles J., Lee, Christina O., Davies, Emma E., Regnault, Florian, Salman, Tarik M., Török, Tibor, Al-Haddad, Nada, Vourlidas, Angelos, Manchester, Ward B., Jin, Meng, Lavraud, Benoit & Galvin, Antoinette B., Frontiers in Astronomy and Space Sciences, 9, 422

2021

  1. In situ multi-spacecraft and remote imaging observations of the first CME detected by Solar Orbiter and BepiColombo [65]
    Davies, E. E., Möstl, C., Owens, M. J., Weiss, A. J., Amerstorfer, T., Hinterreiter, J., Bauer, M., Bailey, R. L., Reiss, M. A., Forsyth, R. J., Horbury, T. S., O'Brien, H., Evans, V., Angelini, V., Heyner, D., Richter, I., Auster, H. -U., Magnes, W., Baumjohann, W., Fischer, D., Barnes, D., Davies, J. A. & Harrison, R. A., A&A, 656, A2
  2. A Catalog of Interplanetary Coronal Mass Ejections Observed by Juno between 1 and 5.4 au [24]
    Davies, Emma E., Forsyth, Robert J., Winslow, Réka M., Möstl, Christian & Lugaz, Noé, ApJ, 923, 136
  3. Radial evolution of the April 2020 stealth coronal mass ejection between 0.8 and 1 AU. Comparison of Forbush decreases at Solar Orbiter and near the Earth [20]
    Freiherr von Forstner, Johan L., Dumbović, Mateja, Möstl, Christian, Guo, Jingnan, Papaioannou, Athanasios, Elftmann, Robert, Xu, Zigong, Christoph Terasa, Jan, Kollhoff, Alexander, Wimmer-Schweingruber, Robert F., Rodríguez-Pacheco, Javier, Weiss, Andreas J., Hinterreiter, Jürgen, Amerstorfer, Tanja, Bauer, Maike, Belov, Anatoly V., Abunina, Maria A., Horbury, Timothy, Davies, Emma E., O'Brien, Helen, Allen, Robert C., Bruce Andrews, G., Berger, Lars, Boden, Sebastian, Cernuda Cangas, Ignacio, Eldrum, Sandra, Espinosa Lara, Francisco, Gómez Herrero, Raúl, Hayes, John R., Ho, George C., Kulkarni, Shrinivasrao R., Jeffrey Lees, W., Martín, César, Mason, Glenn M., Pacheco, Daniel, Prieto Mateo, Manuel, Ravanbakhsh, Ali, Rodríguez Polo, Oscar, Sánchez Prieto, Sebastián, Schlemm, Charles E., Seifert, Helmut, Tyagi, Kush & Yedla, Mahesh, A&A, 656, A1
  4. Multi-spacecraft observations of the structure of the sheath of an interplanetary coronal mass ejection and related energetic ion enhancement [21]
    Kilpua, E. K. J., Good, S. W., Dresing, N., Vainio, R., Davies, E. E., Forsyth, R. J., Gieseler, J., Lavraud, B., Asvestari, E., Morosan, D. E., Pomoell, J., Price, D. J., Heyner, D., Horbury, T. S., Angelini, V., O'Brien, H., Evans, V., Rodriguez-Pacheco, J., Gómez Herrero, R., Ho, G. C. & Wimmer-Schweingruber, R., A&A, 656, A8
  5. Multi-spacecraft study of the solar wind at solar minimum: Dependence on latitude and transient outflows [10]
    Laker, R., Horbury, T. S., Bale, S. D., Matteini, L., Woolley, T., Woodham, L. D., Stawarz, J. E., Davies, E. E., Eastwood, J. P., Owens, M. J., O'Brien, H., Evans, V., Angelini, V., Richter, I., Heyner, D., Owen, C. J., Louarn, P. & Fedorov, A., A&A, 652, A105
  6. Solar origins of a strong stealth CME detected by Solar Orbiter [23]
    O'Kane, Jennifer, Green, Lucie M., Davies, Emma E., Möstl, Christian, Hinterreiter, Jürgen, Freiherr von Forstner, Johan L., Weiss, Andreas J., Long, David M. & Amerstorfer, Tanja, A&A, 656, L6
  7. Study of two interacting interplanetary coronal mass ejections encountered by Solar Orbiter during its first perihelion passage. Observations and modeling [16]
    Telloni, D., Scolini, C., Möstl, C., Zank, G. P., Zhao, L. -L., Weiss, A. J., Reiss, M. A., Laker, R., Perrone, D., Khotyaintsev, Y., Steinvall, K., Sorriso-Valvo, L., Horbury, T. S., Wimmer-Schweingruber, R. F., Bruno, R., D'Amicis, R., De Marco, R., Jagarlamudi, V. K., Carbone, F., Marino, R., Stangalini, M., Nakanotani, M., Adhikari, L., Liang, H., Woodham, L. D., Davies, E. E., Hietala, H., Perri, S., Gómez-Herrero, R., Rodríguez-Pacheco, J., Antonucci, E., Romoli, M., Fineschi, S., Maksimovic, M., Souček, J., Chust, T., Kretzschmar, M., Vecchio, A., Müller, D., Zouganelis, I., Winslow, R. M., Giordano, S., Mancuso, S., Susino, R., Ivanovski, S. L., Messerotti, M., O'Brien, H., Evans, V. & Angelini, V., A&A, 656, A5
  8. Multi-point analysis of coronal mass ejection flux ropes using combined data from Solar Orbiter, BepiColombo, and Wind [32]
    Weiss, A. J., Möstl, C., Davies, E. E., Amerstorfer, T., Bauer, M., Hinterreiter, J., Reiss, M. A., Bailey, R. L., Horbury, T. S., O'Brien, H., Evans, V., Angelini, V., Heyner, D., Richter, I., Auster, H. -U., Magnes, W., Fischer, D. & Baumjohann, W., A&A, 656, A13

2020

  1. On the Radial and Longitudinal Variation of a Magnetic Cloud: ACE, Wind, ARTEMIS and Juno Observations [30]
    Davies, Emma E., Forsyth, Robert J., Good, Simon W. & Kilpua, Emilia K. J., Solar Physics, 295, 157
  2. Three-Dimensional Simulations of Solar Wind Preconditioning and the 23 July 2012 Interplanetary Coronal Mass Ejection [20]
    Desai, Ravindra T., Zhang, Han, Davies, Emma E., Stawarz, Julia E., Mico-Gomez, Joan & Iváñez-Ballesteros, Pilar, Solar Physics, 295, 130


Created on Thu May 22 04:32:50 2025.