An emerging paradigm for the dissipation of magnetic turbulence in the supersonic solar wind is via localized quasi-2D small-scale magnetic island reconnection processes. An advection-diffusion transport equation for a nearly isotropic particle distribution describes particle transport and energization in a region of interacting magnetic islands [1; 2]. The dominant charged particle energization processes are 1) the electric field induced by quasi-2D magnetic island merging, and 2) magnetic island contraction. The acceleration of charged particles in a “sea of magnetic islands” in a super-Alfvénic flow, and the energization of particles by combined diffusive shock acceleration (DSA) and downstream magnetic island reconnection processes are discussed.
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25 March 2016
SOLAR WIND 14: Proceedings of the Fourteenth International Solar Wind Conference
22–26 June 2015
Weihai, China
Research Article|
March 25 2016
Particle acceleration and reconnection in the solar wind Available to Purchase
G. P. Zank;
G. P. Zank
1Center for Space Plasma and Aeronomic Research (CSPAR),
University of Alabama
, Huntsville, AL 35805, USA
2Department of Space Science,
University of Alabama
, Huntsville, AL 35899, USA
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P. Hunana;
P. Hunana
1Center for Space Plasma and Aeronomic Research (CSPAR),
University of Alabama
, Huntsville, AL 35805, USA
2Department of Space Science,
University of Alabama
, Huntsville, AL 35899, USA
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P. Mostafavi;
P. Mostafavi
1Center for Space Plasma and Aeronomic Research (CSPAR),
University of Alabama
, Huntsville, AL 35805, USA
2Department of Space Science,
University of Alabama
, Huntsville, AL 35899, USA
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J. A. le Roux;
J. A. le Roux
1Center for Space Plasma and Aeronomic Research (CSPAR),
University of Alabama
, Huntsville, AL 35805, USA
2Department of Space Science,
University of Alabama
, Huntsville, AL 35899, USA
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G. M. Webb;
G. M. Webb
1Center for Space Plasma and Aeronomic Research (CSPAR),
University of Alabama
, Huntsville, AL 35805, USA
2Department of Space Science,
University of Alabama
, Huntsville, AL 35899, USA
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O. Khabarova;
O. Khabarova
3
Heliophysical Laboratory
, IZMIRAN, Troitsk, Moscow 142190, Russia
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A. C. Cummings;
A. C. Cummings
4
California Institute of Technology
, Mail Code 290-17, Pasadena, CA 91125, USA
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E. C. Stone;
E. C. Stone
4
California Institute of Technology
, Mail Code 290-17, Pasadena, CA 91125, USA
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R. B. Decker
R. B. Decker
5
Johns Hopkins University
/Applied Physics Lab., Laurel, MD 20723-6099, USA
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G. P. Zank
1,2
P. Hunana
1,2
P. Mostafavi
1,2
J. A. le Roux
1,2
G. M. Webb
1,2
O. Khabarova
3
A. C. Cummings
4
E. C. Stone
4
R. B. Decker
5
1Center for Space Plasma and Aeronomic Research (CSPAR),
University of Alabama
, Huntsville, AL 35805, USA
2Department of Space Science,
University of Alabama
, Huntsville, AL 35899, USA
3
Heliophysical Laboratory
, IZMIRAN, Troitsk, Moscow 142190, Russia
4
California Institute of Technology
, Mail Code 290-17, Pasadena, CA 91125, USA
5
Johns Hopkins University
/Applied Physics Lab., Laurel, MD 20723-6099, USA
AIP Conf. Proc. 1720, 070011 (2016)
Citation
G. P. Zank, P. Hunana, P. Mostafavi, J. A. le Roux, G. M. Webb, O. Khabarova, A. C. Cummings, E. C. Stone, R. B. Decker; Particle acceleration and reconnection in the solar wind. AIP Conf. Proc. 25 March 2016; 1720 (1): 070011. https://doi.org/10.1063/1.4943848
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