Large-scale Compression Acceleration during Magnetic Reconnection in a Low-β Plasma

被引:36
|
作者
Li, Xiaocan [1 ]
Guo, Fan [1 ,2 ]
Li, Hui [1 ]
Li, Shengtai [1 ]
机构
[1] Los Alamos Natl Lab, Los Alamos, NM 87545 USA
[2] New Mexico Consortium, Los Alamos, NM 87544 USA
基金
美国国家科学基金会;
关键词
acceleration of particles; magnetic reconnection; Sun: corona; Sun: flares; STOCHASTIC DIFFERENTIAL-EQUATIONS; ELECTRON ACCELERATION; PARTICLE-ACCELERATION; SOLAR-FLARES; COSMIC-RAYS; PERPENDICULAR TRANSPORT; DIPOLARIZATION FRONTS; RHESSI OBSERVATIONS; SPECTRA; FIELDS;
D O I
10.3847/1538-4357/aae07b
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
In solar flares and other astrophysical systems, a major challenge for solving the particle acceleration problem associated with magnetic reconnection is the enormous scale separation between kinetic scales and the observed reconnection scale. Because of this, it has been difficult to draw any definite conclusions by just using kinetic simulations. A particle acceleration model that solves the energetic particle transport equation can capture the main acceleration physics found in kinetic simulations and thus provide a practical way to make observable predictions and directly compare model results with observations. Here we study compression particle acceleration in magnetic reconnection by solving the Parker (diffusion-advection) transport equation using velocity and magnetic fields from two-dimensional magnetohydrodynamics (MHD) simulations of a low-beta high-Lundquist-number reconnection layer. We show that the compressible reconnection layer can give significant particle acceleration, leading to the formation of power-law particle energy distributions. We analyze the acceleration rate and find that the acceleration in the reconnection layer is a mixture of first- and second-order Fermi processes. When including a guide field, we find that the spectrum becomes steeper and both the power-law cutoff energy and maximum particle energy decrease as plasma becomes less compressible. This model produces a 2D particle distribution that one can use to generate a radiation map and directly compare with solar flare observations. This provides a framework to explain particle acceleration at large-scale astrophysical reconnection sites, such as solar flares.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] NONTHERMALLY DOMINATED ELECTRON ACCELERATION DURING MAGNETIC RECONNECTION IN A LOW-β PLASMA
    Li, Xiaocan
    Guo, Fan
    Li, Hui
    Li, Gang
    ASTROPHYSICAL JOURNAL LETTERS, 2015, 811 (02)
  • [2] Particle Acceleration during Magnetic Reconnection in a Low-beta Plasma
    Li, Xiaocan
    Guo, Fan
    Li, Hui
    Li, Gang
    ASTROPHYSICAL JOURNAL, 2017, 843 (01)
  • [3] Determining the Dominant Acceleration Mechanism during Relativistic Magnetic Reconnection in Large-scale Systems
    Guo, Fan
    Li, Xiaocan
    Daughton, William
    Kilian, Patrick
    Li, Hui
    Liu, Yi-Hsin
    Yan, Wangcheng
    Ma, Dylan
    ASTROPHYSICAL JOURNAL LETTERS, 2019, 879 (02)
  • [4] Ion Heating and Acceleration During Magnetic Reconnection Relevant to the Corona
    Drake, J. F.
    Swisdak, M.
    SPACE SCIENCE REVIEWS, 2012, 172 (1-4) : 227 - 240
  • [5] THE ACCELERATION OF IONS IN SOLAR FLARES DURING MAGNETIC RECONNECTION
    Knizhnik, K.
    Swisdak, M.
    Drake, J. F.
    ASTROPHYSICAL JOURNAL LETTERS, 2011, 743 (02)
  • [6] The Roles of Fluid Compression and Shear in Electron Energization during Magnetic Reconnection
    Li, Xiaocan
    Guo, Fan
    Li, Hui
    Birn, Joachim
    ASTROPHYSICAL JOURNAL, 2018, 855 (02)
  • [7] Large-scale reconnection in a large flare
    Somov, BV
    Kosugi, T
    Oreshina, IV
    Lyubimov, GP
    ENERGY RELEASE AND PARTICLE ACCELERATION AT THE SUN AND IN THE HELIOSPHERE, 2005, 35 (10): : 1712 - 1722
  • [8] RECONNECTION PROPERTIES OF LARGE-SCALE CURRENT SHEETS DURING CORONAL MASS EJECTION ERUPTIONS
    Lynch, B. J.
    Edmondson, J. K.
    Kazachenko, M. D.
    Guidoni, S. E.
    ASTROPHYSICAL JOURNAL, 2016, 826 (01)
  • [9] PARTICLE ACCELERATION AT A FLARE TERMINATION SHOCK: EFFECT OF LARGE-SCALE MAGNETIC TURBULENCE
    Guo, Fan
    Giacalone, Joe
    ASTROPHYSICAL JOURNAL, 2012, 753 (01)
  • [10] Proton Acceleration in Low-β Magnetic Reconnection with Energetic Particle Feedback
    Seo, Jeongbhin
    Guo, Fan
    Li, Xiaocan
    Li, Hui
    ASTROPHYSICAL JOURNAL, 2024, 977 (02)