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[41] luquanming.Transmission of large-amplitude ULF waves through a quasi-parallel shock at Venus.JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS,2013,119(1):237-245.
[42] luquanming.Particle-in-cell simulations of magnetically driven reconnection using laser-powered capacitor coils.PHYSICS OF PLASMAS,2018,25(5):
[43] luquanming.Particle-in-cell simulations of electron energization in laser-driven magnetic reconnection.NEW JOURNAL OF PHYSICS,2016,18
[44] luquanming,luquanming.THE ROLE OF PICKUP IONS ON THE STRUCTURE OF THE VENUSIAN BOW SHOCK AND ITS IMPLICATIONS FOR THE TERMINATION SHOCK.ASTROPHYSICAL JOURNAL LETTERS,2013,773(2):
[45] luquanming.Evolution of flux ropes in the magnetotail: A three-dimensional global hybrid simulation.PHYSICS OF PLASMAS,2015,22(5):
[46] luquanming.Comparison between magnetic coplanarity and MVA methods in determining the normal of Venusian bow shock.CHINESE SCIENCE BULLETIN,2013,58(20):2469-2472.
[47] luquanming.Formation of electron energy spectra during magnetic reconnection in laser-produced plasma.PHYSICS OF PLASMAS,2017,24(10):
[48] luquanming.Particle-in-Cell Simulations of Fast Magnetic Reconnection in Laser-Plasma Interaction.CHINESE PHYSICS LETTERS,2013,30(4):
[49] luquanming.The transfer between electron bulk kinetic energy and thermal energy in collisionless magnetic reconnection.PHYSICS OF PLASMAS,2013,20(6):
[50] luquanming.Electron acceleration in a secondary magnetic island formed during magnetic reconnection with a guide field.PHYSICS OF PLASMAS,2017,24(5):