Publications of Liping Yang


A list of publications authored or co-authored by Liping Yang, 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: 0000-0003-4716-2958

List of publications ordered by citations
Number of papers: 39 (refereed: 39)
No. of citations: 540
First author papers: 20 (refereed: 20)

2025

  1. SIP-IFVM: Efficient time-accurate magnetohydrodynamic model of the corona and coronal mass ejections [2]
    Wang, H. P., Guo, J. H., Yang, L. P., Poedts, S., Zhang, F., Lani, A., Baratashvili, T., Linan, L., Lin, R. & Guo, Y., A&A, 693, A257
  2. Natural Generation of Alfvén Waves from Three-dimensional Bursty Interchange Magnetic Reconnection in the Solar Corona [0]
    Yang, Liping, He, Jiansen, Feng, Xueshang, Verscharen, Daniel, Guo, Fan, Li, Hui, Tian, Hui, Li, Wenya, Shen, Fang, Hou, Chuanpeng, Shi, Mijie, Wu, Honghong & Xiong, Ming, ApJ, 982, L25
  3. Expansion-induced Three-part Morphology of the 2021 December 4 Coronal Mass Ejection [0]
    Yang, Liping, Feng, Xueshang, Shen, Fang, Xiong, Ming, Shen, Chenglong, Chi, Yutian, Wang, Yuming, Yan, Kuo, Ma, Mengxuan, Zhou, Yufen, Zhang, Man & Zhao, Xinhua, ApJ, 981, 109

2024

  1. Interplanetary Rotation of 2021 December 4 Coronal Mass Ejection on Its Journey to Mars [2]
    Ma, Mengxuan, Yang, Liping, Shen, Fang, Shen, Chenglong, Chi, Yutian, Wang, Yuming, Zhou, Yufen, Zhang, Man, Heyner, Daniel, Auster, Uli, Richter, Ingo & Sanchez-Cano, Beatriz, ApJ, 976, 183
  2. Distribution and Anisotropy of the Energy Transfer Rate in the Solar Wind Turbulence [0]
    Wu, Honghong, Huang, Shiyong, Wang, Xin, Yang, Liping & Yuan, Zhigang, ApJ, 977, 94
  3. Radial Spectral Evolution of the Elsässer Variable z in the Slow Solar Wind [2]
    Wu, Honghong, Huang, Shiyong, He, Jiansen, Yang, Liping & Yuan, Zhigang, ApJ, 966, 144

2023

  1. Energy transfer of the solar wind turbulence based on Parker solar probe and other spacecraft observations [7]
    Wu, Honghong, Tu, Chuanyi, He, Jiansen, Wang, Xin & Yang, Liping, Physics of Plasmas, 30, 020501
  2. Influence of Intermittency on the Energy Transfer Rate of Solar Wind Turbulence [3]
    Wu, Honghong, Huang, Shiyong, Wang, Xin, Yang, Liping & Yuan, Zhigang, ApJ, 958, L28
  3. Intermittency of Magnetic Discontinuities in the Near-Sun Solar Wind Turbulence [9]
    Wu, Honghong, Huang, Shiyong, Wang, Xin, Yuan, Zhigang, He, Jiansen & Yang, Liping, ApJ, 947, L22
  4. Scaling Anisotropy with Stationary Background Field in Near-Sun Solar Wind Turbulence [4]
    Wu, Honghong, He, Jiansen, Huang, Shiyong, Yang, Liping, Wang, Xin & Yuan, Zhigang, ApJ, 947, 45
  5. Anisotropy of Self-Correlation Level Contours in Three-Dimensional Magnetohydrodynamic Turbulence [0]
    Yang, Liping, He, Jiansen, Wang, Xin, Wu, Honghong, Zhang, Lei & Feng, Xueshang, Universe, 9, 395
  6. Global Morphology Distortion of the 2021 October 9 Coronal Mass Ejection from an Ellipsoid to a Concave Shape [6]
    Yang, Liping, Hou, Chuanpeng, Feng, Xueshang, He, Jiansen, Xiong, Ming, Zhang, Man, Zhou, Yufen, Shen, Fang, Zhao, Xinhua, Li, Huichao, Yang, Yi & Liu, Xiaojing, ApJ, 942, 65
  7. A Data-constrained Scheme for the Reconstruction of Solar Wind Parameters in the Inner Heliosphere [1]
    Zhang, Man, Feng, Xueshang, Yang, Liping & Liu, Xiaojing, ApJS, 264, 36

2022

  1. Consistency of von Karman Decay Rate with the Energy Supply Rate and Heating Rate Observed by Parker Solar Probe [8]
    Wu, Honghong, Tu, Chuanyi, He, Jiansen, Wang, Xin & Yang, Liping, ApJ, 926, 116

2021

  1. Solar Origin of Compressive Alfvénic Spikes/Kinks as Observed by Parker Solar Probe [31]
    He, Jiansen, Zhu, Xingyu, Yang, Liping, Hou, Chuanpeng, Duan, Die, Zhang, Lei & Wang, Ying, ApJ, 913, L14
  2. The Encounter of the Parker Solar Probe and a Comet-like Object Near the Sun: Model Predictions and Measurements [9]
    He, Jiansen, Cui, Bo, Yang, Liping, Hou, Chuanpeng, Zhang, Lei, Ip, Wing-Huen, Jia, Ying-Dong, Dong, Chuanfei, Duan, Die, Zong, Qiugang, Bale, Stuart D., Pulupa, Marc, Bonnell, John W., Dudok De Wit, Thierry, Goetz, Keith, Harvey, Peter R., MacDowall, Robert J. & Malaspina, David M., ApJ, 910, 7
  3. Energy Supply by Low-frequency Break Sweeping for Heating the Fast Solar Wind from 0.3 to 4.8 au [13]
    Wu, Honghong, Tu, Chuanyi, Wang, Xin, He, Jiansen, Yang, Liping & Yao, Shuo, ApJ, 912, 84
  4. Magnetic and Velocity Fluctuations in the Near-Sun Region from 0.1-0.3 au Observed by Parker Solar Probe [6]
    Wu, Honghong, Tu, Chuanyi, Wang, Xin & Yang, Liping, ApJ, 922, 92
  5. Large Amplitude Switchback Turbulence: Possible Magnetic Velocity Alignment Structures [13]
    Wu, Honghong, Tu, Chuanyi, Wang, Xin & Yang, Liping, ApJ, 911, 73
  6. Numerical MHD Simulations of the 3D Morphology and Kinematics of the 2017 September 10 CME-driven Shock from the Sun to Earth [11]
    Yang, Liping, Wang, Haopeng, Feng, Xueshang, Xiong, Ming, Zhang, Man, Zhu, Bei, Li, Huichao, Zhou, Yufen, Shen, Fang, Zhao, Xinhua & Liu, Xiaojing, ApJ, 918, 31
  7. Influence of Large-scale Field Structures on the Scaling Anisotropy in 3D MHD Turbulence [5]
    Yang, Liping, Tu, Chuanyi, He, Jiansen, Wu, Honghong, Wang, Xin & Feng, Xueshang, ApJ, 920, 14
  8. A Provably Positive, Divergence-free Constrained Transport Scheme for the Simulation of Solar Wind [6]
    Zhang, Man, Feng, Xueshang, Liu, Xiaojing & Yang, Liping, ApJS, 257, 32
  9. Numerical Study of Two Injection Methods for the 2007 November 15 Coronal Mass Ejection in the Inner Heliosphere [2]
    Zhang, Man, Feng, Xueshang, Shen, Fang & Yang, Liping, ApJ, 918, 35

2020

  1. Energy Supply for Heating the Slow Solar Wind Observed by Parker Solar Probe between 0.17 and 0.7 au [22]
    Wu, Honghong, Tu, Chuanyi, Wang, Xin, He, Jiansen & Yang, Liping, ApJ, 904, L8
  2. Isotropic Scaling Features Measured Locally in the Solar Wind Turbulence with Stationary Background Field [14]
    Wu, Honghong, Tu, Chuanyi, Wang, Xin, He, Jiansen, Yang, Liping & Wang, Linghua, ApJ, 892, 138
  3. Fast Magnetic Reconnection with Turbulence in High Lundquist Number Limit [30]
    Yang, Liping, Li, Hui, Guo, Fan, Li, Xiaocan, Li, Shengtai, He, Jiansen, Zhang, Lei & Feng, Xueshang, ApJ, 901, L22

2019

  1. Energy occupation of waves and structures in 3D compressive MHD turbulence [12]
    Yang, L. P., Li, H., Li, S. T., Zhang, L., He, J. S. & Feng, X. S., MNRAS, 488, 859

2018

  1. Coexistence of Slow-mode and Alfvén-mode Waves and Structures in 3D Compressive MHD Turbulence [14]
    Yang, Liping, Zhang, Lei, He, Jiansen, Tu, Chuanyi, Li, Shengtai, Wang, Xin & Wang, Linghua, ApJ, 866, 41
  2. Disappearance of Anisotropic Intermittency in Large-amplitude MHD Turbulence and Its Comparison with Small-amplitude MHD Turbulence [8]
    Yang, Liping, Zhang, Lei, He, Jiansen, Tu, Chuanyi, Li, Shengtai, Wang, Xin & Wang, Linghua, ApJ, 855, 69
  3. Formation of Cool and Warm Jets by Magnetic Flux Emerging from the Solar Chromosphere to Transition Region [21]
    Yang, Liping, Peter, Hardi, He, Jiansen, Tu, Chuanyi, Wang, Linghua, Zhang, Lei & Yan, Limei, ApJ, 852, 16

2017

  1. Formation and Properties of Tangential Discontinuities in Three-dimensional Compressive MHD Turbulence [23]
    Yang, Liping, Zhang, Lei, He, Jiansen, Tu, Chuanyi, Li, Shengtai, Wang, Xin & Wang, Linghua, ApJ, 851, 121
  2. Influence of Intermittency on the Quasi-perpendicular Scaling in Three-dimensional Magnetohydrodynamic Turbulence [14]
    Yang, Liping, He, Jiansen, Tu, Chuanyi, Li, Shengtai, Zhang, Lei, Wang, Xin, Marsch, Eckart & Wang, Linghua, ApJ, 846, 49

2016

  1. A Self-consistent Numerical Study of the Global Solar Wind Driven by the Unified Nonlinear Alfvén Wave [8]
    Yang, L. P., Feng, X. S., He, J. S., Zhang, L. & Zhang, M., Solar Physics, 291, 953

2015

  1. The Formation of Rotational Discontinuities in Compressive Three-dimensional MHD Turbulence [22]
    Yang, Liping, Zhang, Lei, He, Jiansen, Tu, Chuanyi, Wang, Linghua, Marsch, Eckart, Wang, Xin, Zhang, Shaohua & Feng, Xueshang, ApJ, 809, 155
  2. Numerical Simulation of Fast-mode Magnetosonic Waves Excited by Plasmoid Ejections in the Solar Corona [39]
    Yang, Liping, Zhang, Lei, He, Jiansen, Peter, Hardi, Tu, Chuanyi, Wang, Linghua, Zhang, Shaohua & Feng, Xueshang, ApJ, 800, 111

2013

  1. Numerical Simulations of Chromospheric Anemone Jets Associated with Moving Magnetic Features [55]
    Yang, Liping, He, Jiansen, Peter, Hardi, Tu, Chuanyi, Zhang, Lei, Feng, Xueshang & Zhang, Shaohua, ApJ, 777, 16
  2. Injection of Plasma into the Nascent Solar Wind via Reconnection Driven by Supergranular Advection [34]
    Yang, Liping, He, Jiansen, Peter, Hardi, Tu, Chuanyi, Chen, Wenlei, Zhang, Lei, Marsch, Eckart, Wang, Linghua, Feng, Xueshang & Yan, Limei, ApJ, 770, 6

2012

  1. Time-dependent MHD modeling of the global solar corona for year 2007: Driven by daily-updated magnetic field synoptic data [58]
    Yang, L. P., Feng, X. S., Xiang, C. Q., Liu, Yang, Zhao, Xuepu & Wu, S. T., Journal of Geophysical Research (Space Physics), 117, A08110

2011

  1. Simulation of the Unusual Solar Minimum with 3D SIP-CESE MHD Model by Comparison with Multi-Satellite Observations [26]
    Yang, Liping, Feng, Xueshang, Xiang, Changqing, Zhang, Shaohua & Wu, S. T., Solar Physics, 271, 91


Created on Thu May 22 04:34:28 2025.