Wave-particle interactions with parallel whistler waves: Nonlinear and time-dependent effects revealed by particle-in-cell simulations

被引:20
作者
Camporeale, Enrico [1 ]
Zimbardo, Gaetano [2 ]
机构
[1] CWI, Ctr Math & Comp Sci, NL-1098 XG Amsterdam, Netherlands
[2] Univ Calabria, Dept Phys, I-87036 Arcavacata Di Rende, Italy
关键词
PITCH-ANGLE DIFFUSION; SOLAR-WIND; CHARGED-PARTICLES; COEFFICIENTS; GENERATION; PLASMA; DISSIPATION; ELECTRONS; TRANSPORT; IMPLICIT;
D O I
10.1063/1.4929853
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
We present a self-consistent Particle-in-Cell simulation of the resonant interactions between anisotropic energetic electrons and a population of whistler waves, with parameters relevant to the Earth's radiation belt. By tracking PIC particles and comparing with test-particle simulations, we emphasize the importance of including nonlinear effects and time evolution in the modeling of wave-particle interactions, which are excluded in the resonant limit of quasi-linear theory routinely used in radiation belt studies. In particular, we show that pitch angle diffusion is enhanced during the linear growth phase, and it rapidly saturates well before a single bounce period. This calls into question the widely used bounce average performed in most radiation belt diffusion calculations. Furthermore, we discuss how the saturation is related to the fact that the domain in which the particles pitch angle diffuses is bounded, and to the well-known problem of 90 degrees diffusion barrier. (C) 2015 AIP Publishing LLC.
引用
收藏
页数:9
相关论文
共 59 条
[1]   Estimates of lifetimes against pitch angle diffusion [J].
Albert, J. M. ;
Shprits, Y. Y. .
JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS, 2009, 71 (16) :1647-1652
[2]   A note on confined diffusion [J].
Bickel, Thomas .
PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS, 2007, 377 (01) :24-32
[3]   On the numerical simulation of particle dynamics in the radiation belt: 1. Implicit and semi-implicit schemes [J].
Camporeale, E. ;
Delzanno, G. L. ;
Zaharia, S. ;
Koller, J. .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2013, 118 (06) :3463-3475
[4]   Resonant and nonresonant whistlers-particle interaction in the radiation belts [J].
Camporeale, Enrico .
GEOPHYSICAL RESEARCH LETTERS, 2015, 42 (09) :3114-3121
[5]   THE DISSIPATION OF SOLAR WIND TURBULENT FLUCTUATIONS AT ELECTRON SCALES [J].
Camporeale, Enrico ;
Burgess, David .
ASTROPHYSICAL JOURNAL, 2011, 730 (02)
[6]   Electron firehose instability: Kinetic linear theory and two-dimensional particle-in-cell simulations [J].
Camporeale, Enrico ;
Burgess, David .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2008, 113 (A7)
[7]   Discovery of very large amplitude whistler-mode waves in Earth's radiation belts [J].
Cattell, C. ;
Wygant, J. R. ;
Goetz, K. ;
Kersten, K. ;
Kellogg, P. J. ;
von Rosenvinge, T. ;
Bale, S. D. ;
Roth, I. ;
Temerin, M. ;
Hudson, M. K. ;
Mewaldt, R. A. ;
Wiedenbeck, M. ;
Maksimovic, M. ;
Ergun, R. ;
Acuna, M. ;
Russell, C. T. .
GEOPHYSICAL RESEARCH LETTERS, 2008, 35 (01)
[8]   NONLINEAR BOUND ON UNSTABLE FIELD ENERGY IN RELATIVISTIC ELECTRON-BEAMS AND PLASMAS [J].
DAVIDSON, RC ;
YOON, PH .
PHYSICS OF FLUIDS B-PLASMA PHYSICS, 1989, 1 (01) :195-203
[9]   Whistler anisotropy instabilities as the source of banded chorus: Van Allen Probes observations and particle-in-cell simulations [J].
Fu, Xiangrong ;
Cowee, Misa M. ;
Friedel, Reinhard H. ;
Funsten, Herbert O. ;
Gary, S. Peter ;
Hospodarsky, George B. ;
Kletzing, Craig ;
Kurth, William ;
Larsen, Brian A. ;
Liu, Kaijun ;
MacDonald, Elizabeth A. ;
Min, Kyungguk ;
Reeves, Geoffrey D. ;
Skoug, Ruth M. ;
Winske, Dan .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2014, 119 (10) :8288-8298
[10]   Newevidence for generation mechanisms of discrete and hiss-like whistler mode waves [J].
Gao, Xinliang ;
Li, Wen ;
Thorne, Richard M. ;
Bortnik, Jacob ;
Angelopoulos, Vassilis ;
Lu, Quanming ;
Tao, Xin ;
Wang, Shui .
GEOPHYSICAL RESEARCH LETTERS, 2014, 41 (14) :4805-4811