Charged Particle Diffusion in Isotropic Random Magnetic Fields
© 2017. The American Astronomical Society. All rights reserved.. The investigation of the diffusive transport of charged particles in a turbulent magnetic field remains a subject of considerable interest. Research has most frequently concentrated on determining the diffusion coefficient in the prese...
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th-mahidol.424962019-03-14T15:03:32Z Charged Particle Diffusion in Isotropic Random Magnetic Fields P. Subedi W. Sonsrettee P. Blasi D. Ruffolo W. H. Matthaeus D. Montgomery P. Chuychai P. Dmitruk M. Wan T. N. Parashar R. Chhiber University of Delaware Panyapiwat Institute of Management Osservatorio Astrofisico Di Arcetri Gran Sasso Science Institute Mahidol University Dartmouth College Universidad de Buenos Aires Southern University of Science and Technology Earth and Planetary Sciences © 2017. The American Astronomical Society. All rights reserved.. The investigation of the diffusive transport of charged particles in a turbulent magnetic field remains a subject of considerable interest. Research has most frequently concentrated on determining the diffusion coefficient in the presence of a mean magnetic field. Here we consider the diffusion of charged particles in fully three-dimensional isotropic turbulent magnetic fields with no mean field, which may be pertinent to many astrophysical situations. We identify different ranges of particle energy depending upon the ratio of Larmor radius to the characteristic outer length scale of turbulence. Two different theoretical models are proposed to calculate the diffusion coefficient, each applicable to a distinct range of particle energies. The theoretical results are compared to those from computer simulations, showing good agreement. 2018-12-21T07:27:39Z 2019-03-14T08:03:32Z 2018-12-21T07:27:39Z 2019-03-14T08:03:32Z 2017-03-10 Article Astrophysical Journal. Vol.837, No.2 (2017) 10.3847/1538-4357/aa603a 15384357 0004637X 2-s2.0-85015933524 https://repository.li.mahidol.ac.th/handle/123456789/42496 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85015933524&origin=inward |
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Earth and Planetary Sciences P. Subedi W. Sonsrettee P. Blasi D. Ruffolo W. H. Matthaeus D. Montgomery P. Chuychai P. Dmitruk M. Wan T. N. Parashar R. Chhiber Charged Particle Diffusion in Isotropic Random Magnetic Fields |
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© 2017. The American Astronomical Society. All rights reserved.. The investigation of the diffusive transport of charged particles in a turbulent magnetic field remains a subject of considerable interest. Research has most frequently concentrated on determining the diffusion coefficient in the presence of a mean magnetic field. Here we consider the diffusion of charged particles in fully three-dimensional isotropic turbulent magnetic fields with no mean field, which may be pertinent to many astrophysical situations. We identify different ranges of particle energy depending upon the ratio of Larmor radius to the characteristic outer length scale of turbulence. Two different theoretical models are proposed to calculate the diffusion coefficient, each applicable to a distinct range of particle energies. The theoretical results are compared to those from computer simulations, showing good agreement. |
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University of Delaware |
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University of Delaware P. Subedi W. Sonsrettee P. Blasi D. Ruffolo W. H. Matthaeus D. Montgomery P. Chuychai P. Dmitruk M. Wan T. N. Parashar R. Chhiber |
format |
Article |
author |
P. Subedi W. Sonsrettee P. Blasi D. Ruffolo W. H. Matthaeus D. Montgomery P. Chuychai P. Dmitruk M. Wan T. N. Parashar R. Chhiber |
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P. Subedi |
title |
Charged Particle Diffusion in Isotropic Random Magnetic Fields |
title_short |
Charged Particle Diffusion in Isotropic Random Magnetic Fields |
title_full |
Charged Particle Diffusion in Isotropic Random Magnetic Fields |
title_fullStr |
Charged Particle Diffusion in Isotropic Random Magnetic Fields |
title_full_unstemmed |
Charged Particle Diffusion in Isotropic Random Magnetic Fields |
title_sort |
charged particle diffusion in isotropic random magnetic fields |
publishDate |
2018 |
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https://repository.li.mahidol.ac.th/handle/123456789/42496 |
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1763494553606684672 |