Publications of Ming Zhang


A list of publications authored or co-authored by Ming Zhang, 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: 0000-0003-3529-8743

List of publications ordered by citations
Number of papers: 46 (refereed: 38)
No. of citations: 1010
First author papers: 13 (refereed: 8)

2024

  1. A Numerical Study of the Effects of a Corotating Interaction Region on Cosmic-Ray Transport. II. Features of Cosmic-Ray Composition and Rigidity [3]
    Luo, Xi, Potgieter, Marius S., Zhang, Ming & Shen, Fang, ApJ, 961, 21
  2. Extracting the True Cosmic-ray Relative Intensity Sky Map from Normalized Relative Intensity Data Measured by Air Shower Experiments [0]
    Maalal, N. D. & Zhang, M., ApJ, 970, 134

2023

  1. Simulation of the Solar Energetic Particle Event on 2020 May 29 Observed by Parker Solar Probe [3]
    Cheng, Lei, Zhang, Ming, Lario, David, Balmaceda, Laura A., Kwon, Ryun Young & Cohen, Christina, ApJ, 943, 134
  2. A Data-driven, Physics-based Transport Model of Solar Energetic Particles Accelerated by Coronal Mass Ejection Shocks Propagating through the Solar Coronal and Heliospheric Magnetic Fields [9]
    Zhang, Ming, Cheng, Lei, Zhang, Ju, Riley, Pete, Kwon, Ryun Young, Lario, David, Balmaceda, Laura & Pogorelov, Nikolai V., ApJS, 266, 35

2022

  1. Galactic Cosmic Rays Throughout the Heliosphere and in the Very Local Interstellar Medium [20]
    Rankin, Jamie S., Bindi, Veronica, Bykov, Andrei M., Cummings, Alan C., Della Torre, Stefano, Florinski, Vladimir, Heber, Bernd, Potgieter, Marius S., Stone, Edward C. & Zhang, Ming, Space Science Reviews, 218, 42
  2. Bulk Properties of Pickup Ions Derived from the Ulysses Solar Wind Ion Composition Spectrometer Data [3]
    Smith, William P., Renfroe, Kyle, Pogorelov, Nikolai V., Zhang, Ming, Gedalin, Michael & Kim, Tae K., ApJ, 933, 124
  3. Comprehensive modulation potential for the solar modulation of Galactic cosmic rays [3]
    Song, Xiaojian, Luo, Xi, Potgieter, Marius S. & Zhang, Ming, Physical Review D, 106, 123004

2020

  1. Fast and Wide CMEs without Observed >20 MeV Protons [12]
    Lario, D., Kwon, R. Y., Balmaceda, L., Richardson, I. G., Krupar, V., Thompson, B. J., Cyr, O. C. St, Zhao, L. & Zhang, M., ApJ, 889, 92
  2. A Numerical Study of the Effects of Corotating Interaction Regions on Cosmic-Ray Transport [20]
    Luo, Xi, Zhang, Ming, Feng, Xueshang, Potgieter, Marius S., Shen, Fang & Bazilevskaya, Galina, ApJ, 899, 90
  3. Modulation of Galactic Cosmic Rays by Plasma Disturbances Propagating Through the Local Interstellar Medium in the Outer Heliosheath [14]
    Zhang, Ming & Pogorelov, Nikolai, ApJ, 895, 1
  4. The Original Anisotropy of TeV Cosmic Rays in the Local Interstellar Medium [17]
    Zhang, Ming, Pogorelov, N. V., Zhang, Y., Hu, H. B. & Schlickeiser, R., ApJ, 889, 97
  5. Modeling the Transport Processes of a Pair of Solar Energetic Particle Events Observed by Parker Solar Probe Near Perihelion [5]
    Zhao, Lulu, Zhang, Ming & Lario, David, ApJ, 898, 16

2019

  1. A Numerical Study of Cosmic Proton Modulation Using AMS-02 Observations [29]
    Luo, Xi, Potgieter, Marius S., Bindi, Veronica, Zhang, Ming & Feng, Xueshang, ApJ, 878, 6
  2. On the Anisotropy of Galactic Cosmic Rays [5]
    Schlickeiser, R., Oppotsch, J., Zhang, M. & Pogorelov, N. V., ApJ, 879, 29
  3. Determination of Plasma, Pickup Ion, and Suprathermal Particle Spectrum in the Solar Wind Frame of Reference [5]
    Zhang, Ming, Zhao, Lulu, von Steiger, R., Wimmer-Schweingruber, R. F., Gloeckler, G. M., Desai, M. & Pogorelov, N. V., ApJ, 871, 60
  4. Statistical Analysis of Interplanetary Magnetic Field Path Lengths from Solar Energetic Electron Events Observed by WIND [27]
    Zhao, Lulu, Li, Gang, Zhang, Ming, Wang, Linghua, Moradi, Ashraf & Effenberger, Frederic, ApJ, 878, 107

2018

  1. A Study of Electron Forbush Decreases with a 3D SDE Numerical Model [10]
    Luo, Xi, Potgieter, Marius S., Zhang, Ming & Feng, Xueshang, ApJ, 860, 160
  2. Effects of Coronal Magnetic Field Structures on the Transport of Solar Energetic Particles [12]
    Zhao, Lulu & Zhang, Ming, ApJ, 859, L29

2017

  1. A Numerical Study of Forbush Decreases with a 3D Cosmic-Ray Modulation Model Based on an SDE Approach [36]
    Luo, Xi, Potgieter, Marius S., Zhang, Ming & Feng, Xueshang, ApJ, 839, 53
  2. Heliosheath Processes and the Structure of the Heliopause: Modeling Energetic Particles, Cosmic Rays, and Magnetic Fields [70]
    Pogorelov, N. V., Fichtner, H., Czechowski, A., Lazarian, A., Lembege, B., le Roux, J. A., Potgieter, M. S., Scherer, K., Stone, E. C., Strauss, R. D., Wiengarten, T., Wurz, P., Zank, G. P. & Zhang, M., Space Science Reviews, 212, 193
  3. Pristine TeV cosmic-ray anisotropy in the local interstellar medium [1]
    Zhang, M. & Pogorelov, N., 35th International Cosmic Ray Conference (ICRC2017), International Cosmic Ray Conference, 301, p. 502
  4. Cosmic-ray acceleration by compressive plasma fluctuations in supernova shells [0]
    Zhang, M., 35th International Cosmic Ray Conference (ICRC2017), International Cosmic Ray Conference, 301, p. 256
  5. Precipitation and Release of Solar Energetic Particles from the Solar Coronal Magnetic Field [33]
    Zhang, Ming & Zhao, Lulu, ApJ, 846, 107
  6. The Effects of Interplanetary Transport in the Event-intergrated Solar Energetic Particle Spectra [17]
    Zhao, Lulu, Zhang, Ming & Rassoul, Hamid K., ApJ, 836, 31

2016

  1. Study cosmic ray modulation near the heliopause: A numerical approach [0]
    Luo, X., Zhang, M., Potgieter, M. S., Feng, X. & Pogorelov, N. V., Solar Wind 14, American Institute of Physics Conference Series, 1720, p. 070005
  2. A Numerical Simulation of Cosmic Ray Modulation Near the Heliopause. II. Some Physical Insights [20]
    Luo, Xi, Potgieter, Marius S., Zhang, Ming, Pogorelov, Nikolai V., Feng, Xueshang & Strauss, Du Toit R., ApJ, 826, 182
  3. Double Power Laws in the Event-integrated Solar Energetic Particle Spectrum [40]
    Zhao, Lulu, Zhang, Ming & Rassoul, Hamid K., ApJ, 821, 62

2015

  1. The Heliotail [75]
    Pogorelov, N. V., Borovikov, S. N., Heerikhuisen, J. & Zhang, M., ApJ, 812, L6

2014

  1. A Numerical Simulation of Solar Energetic Particle Dropouts during Impulsive Events [29]
    Wang, Y., Qin, G., Zhang, M. & Dalla, S., ApJ, 789, 157
  2. Heliospheric Influence on the Anisotropy of TeV Cosmic Rays [51]
    Zhang, Ming, Zuo, Pingbing & Pogorelov, Nikolai, ApJ, 790, 5

2013

  1. Alfvénic turbulence generated by the interstellar pickup protons in the outer heliosphere [1]
    Gamayunov, K., Zhang, M., Pogorelov, N., Heerikhuisen, J. & Rassoul, H., Solar Wind 13 (Editors: Zank, Gary P., Borovsky, Joe, Bruno, Roberto, Cirtain, Jonathan, Cranmer, Steve, Elliott, Heather, Giacalone, Joe, Gonzalez, Walter, Li, Gang, Marsch, Eckart, Moebius, Ebehard, Pogorelov, Nick, Spann, Jim & Verkhoglyadova, Olga), American Institute of Physics Conference Series, 1539, p. 171
  2. Galactic Cosmic-Ray Modulation in a Realistic Global Magnetohydrodynamic Heliosphere [25]
    Luo, Xi, Zhang, Ming, Rassoul, Hamid K., Pogorelov, Nikolai V. & Heerikhuisen, Jacob, ApJ, 764, 85
  3. The Role of Cross-shock Potential on Pickup Ion Shock Acceleration in the Framework of Focused Transport Theory [7]
    Zuo, Pingbing, Zhang, Ming & Rassoul, Hamid K., ApJ, 776, 93

2012

  1. Self-consistent Model of the Interstellar Pickup Protons, Alfvénic Turbulence, and Core Solar Wind in the Outer Heliosphere [24]
    Gamayunov, Konstantin V., Zhang, Ming, Pogorelov, Nikolai V., Heerikhuisen, Jacob & Rassoul, Hamid K., ApJ, 757, 74
  2. A Theory of Bimodal Acceleration of Pickup Ions by Compressive Solar Wind Turbulence under Pressure Balance [13]
    Zhang, Ming & Schlickeiser, Reinhard, ApJ, 756, 129

2011

  1. Delay in Onset Times of Solar Energetic Particles [2]
    DIAZ, Ismael, International Cosmic Ray Conference, International Cosmic Ray Conference, 10, p. 41
  2. Remote sensing: a new feature caused by the GMIR on cosmic ray transport in the heliosheath [0]
    LUO, Xi, International Cosmic Ray Conference, International Cosmic Ray Conference, 11, p. 43
  3. Cosmic-ray Modulation by the Global Merged Interaction Region in the Heliosheath [22]
    Luo, Xi, Zhang, Ming, Rassoul, Hamid K. & Pogorelov, N. V., ApJ, 730, 13
  4. Acceleration of energetic particles by compressive plasma waves of arbitrary scale sizes [1]
    Zhang, Ming, International Cosmic Ray Conference, International Cosmic Ray Conference, 10, p. 244
  5. Energy Spectrum of Energetic Particles Accelerated by Shock Waves: From Focused Transport to Diffusive Acceleration [27]
    Zuo, Pingbing, Zhang, Ming, Gamayunov, Konstantin, Rassoul, Hamid & Luo, Xi, ApJ, 738, 168

2010

  1. Pitch Angle Scattering in the Outer Heliosheath and Formation of the Interstellar Boundary EXplorer ribbon [60]
    Gamayunov, Konstantin, Zhang, Ming & Rassoul, Hamid, ApJ, 725, 2251

2009

  1. Propagation of Solar Energetic Particles in Three-Dimensional Interplanetary Magnetic Fields [139]
    Zhang, Ming, Qin, Gang & Rassoul, Hamid, ApJ, 692, 109

2006

  1. Acceleration of galactic and anomalous cosmic rays in the heliosheath [24]
    Zhang, Ming, Physics of the Inner Heliosheath (Editors: Heerikhuisen, Jacob, Florinski, Vladimir, Zank, Gary P. & Pogorelov, Nikolai V.), American Institute of Physics Conference Series, 858, p. 226

2004

  1. Energetic Particles at High Latitudes of the Heliosphere [0]
    Zhang, Ming, Physics of the Outer Heliosphere (Editors: Florinski, Vladimir, Pogorelov, Nikolai V. & Zank, Gary P.), American Institute of Physics Conference Series, 719, p. 260

2003

  1. Delay in solar energetic particle onsets at high heliographic latitudes [33]
    Dalla, S., Balogh, A., Krucker, S., Posner, A., Müller-Mellin, R., Anglin, J. D., Hofer, M. Y., Marsden, R. G., Sanderson, T. R., Heber, B., Zhang, M. & McKibben, R. B., Annales Geophysicae, 21, 1367
  2. Ulysses COSPIN observations of cosmic rays and solar energetic particles from the South Pole to the North Pole of the Sun during solar maximum [63]
    McKibben, R. B., Connell, J. J., Lopate, C., Zhang, M., Anglin, J. D., Balogh, A., dalla, S., Sanderson, T. R., Marsden, R. G., Hofer, M. Y., Kunow, H., Posner, A. & Heber, B., Annales Geophysicae, 21, 1217


Created on Thu May 22 04:34:29 2025.