First-authored, refereed papers of P. F. Chen, ordered by citations


A list of first-authored, refereed publications of P. F. Chen, derived from the SAO/NASA Astrophysics Data System (ADS) and ordered by the numbers of citations.

Orcid ID: 0000-0002-7289-642X

Number of papers: 29
No. of citations: 2700

723 Coronal Mass Ejections: Models and Their Observational Basis
Chen, P. F., 2011, Living Reviews in Solar Physics, 8, 1
487 An Emerging Flux Trigger Mechanism for Coronal Mass Ejections
Chen, P. F. & Shibata, K., 2000, ApJ, 545, 524
297 Evidence of EIT and Moreton Waves in Numerical Simulations
Chen, P. F., Wu, S. T., Shibata, K. & Fang, C., 2002, ApJ, 572, L99
201 A Full View of EIT Waves
Chen, P. F., Fang, C. & Shibata, K., 2005, ApJ, 622, 1202
129 First Evidence of Coexisting EIT Wave and Coronal Moreton Wave from SDO/AIA Observations
Chen, P. F. & Wu, Y., 2011, ApJ, 732, L20
114 Transition-Region Explosive Events: Reconnection Modulated by p-Mode Waves
Chen, P. F. & Priest, E. R., 2006, Solar Physics, 238, 313
110 Imaging and Spectroscopic Observations of a Filament Channel and the Implications for the Nature of Counter-streamings
Chen, P. F., Harra, L. K. & Fang, C., 2014, ApJ, 784, 50
93 The Relation between EIT Waves and Solar Flares
Chen, P. F., 2006, ApJ, 641, L153
82 SOHO/SUMER observations of prominence oscillation before eruption
Chen, P. F., Innes, D. E. & Solanki, S. K., 2008, A&A, 484, 487
80 The Relation Between EIT Waves and Coronal Mass Ejections
Chen, P. F., 2009, ApJ, 698, L112
72 Simulation of Magnetic Reconnection with Heat Conduction
Chen, P. F., Fang, C., Tang, Y. H. & Ding, M. D., 1999, ApJ, 513, 516
45 Global Coronal Waves
Chen, P. F., 2016, Geophysical Monograph Series, 216, 381
40 Can a Fast-Mode EUV Wave Generate a Stationary Front?
Chen, P. F., Fang, C., Chandra, R. & Srivastava, A. K., 2016, Solar Physics, 291, 3195
39 Flaring Loop Motion and a Unified Model for Solar Flares
Chen, P. F., Fang, C., Ding, M. D. & Tang, Y. H., 1999, ApJ, 520, 853
37 A Reexamination of the Evidence for Reconnection Inflow
Chen, P. F., Shibata, K., Brooks, D. H. & Isobe, H., 2004, ApJ, 602, L61
37 Synthesis of CME-Associated Moreton and EIT Wave Features from MHD Simulations
Chen, P. F., Ding, M. D. & Fang, C., 2005, Space Science Reviews, 121, 201
27 Initiation and propagation of coronal mass ejections
Chen, P. F., 2008, Journal of Astrophysics and Astronomy, 29, 179
17 Where do flare ribbons stop?
Chen, P. F., Su, J. T., Guo, Y. & Deng, Y. Y., 2012, Chinese Science Bulletin, 57, 1393
16 EIT waves and coronal magnetic field diagnostics
Chen, Pengfei, 2009, Science in China: Physics, Mechanics and Astronomy, 52, 1785
14 Pseudo-reconnection in MHD numerical simulation.
Chen, Pengfei, Fang, Cheng & Hu, Youqiu, 2000, Chinese Science Bulletin, 45, 798
10 The Sun is becoming more active than expected
Chen, PengFei, 2023, Science China Physics, Mechanics, and Astronomy, 66, 129631
8 The continued debate on solar coronal EUV waves
Chen, PengFei, 2017, Science China Physics, Mechanics, and Astronomy, 60, 29631
7 Why are there stationary EIT wave fronts
Chen, P. F., Fang, C. & Shibata, K., 2006, Advances in Space Research, 38, 456
6 Chinese solar physics gliding into the space age
Chen, PengFei, 2018, Science China Physics, Mechanics, and Astronomy, 61, 109631
5 Magnetic reconnection configurations and particle acceleration in solar flares
Chen, P. F., Liu, W. J. & Fang, C., 2007, Advances in Space Research, 39, 1421
3 Coronal mass ejections and emerging flux
Chen, P. F., Fang, C., Shibata, K. & Tang, Y. H., 2002, Advances in Space Research, 30, 535
1 Numerical Study on the Effect of Heat Conduction on Magnetic Reconnection
Chen, P. F., Fang, C., Tang, Y. H. & Ding, M. D., 2000, Advances in Space Research, 26, 525
0 Solar Filament Physiognomy: Inferring Magnetic Quantities from Imaging Observations
Chen, P. F., 2025, Solar Physics, 300, 172
0 Recent progress in Asia-Pacific solar physics and astrophysics
Chen, P. F., Shibata, K. & Matsumoto, R., 2018, Reviews of Modern Plasma Physics, 2, 5


Created on Wed Apr 22 04:35:54 2026.