Simulation and Quasi-Linear Theory of Whistler Anisotropy Instability
被引:13
作者:
Lee, Sang-Yun
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机构:
Kyung Hee Univ, Sch Space Res, Yongin, South KoreaKyung Hee Univ, Sch Space Res, Yongin, South Korea
Lee, Sang-Yun
[1
]
Lee, Ensang
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机构:
Kyung Hee Univ, Sch Space Res, Yongin, South KoreaKyung Hee Univ, Sch Space Res, Yongin, South Korea
Lee, Ensang
[1
]
Seough, Jungjoon
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机构:
Korea Astron & Space Sci Inst, Daejeon, South KoreaKyung Hee Univ, Sch Space Res, Yongin, South Korea
Seough, Jungjoon
[2
]
Lee, Jung-gi
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机构:
Korea Astron & Space Sci Inst, Daejeon, South KoreaKyung Hee Univ, Sch Space Res, Yongin, South Korea
Lee, Jung-gi
[2
]
Hwang, Junga
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机构:
Korea Astron & Space Sci Inst, Daejeon, South Korea
Univ Sci & Technol, Dept Astron & Space Sci, Daejeon, South KoreaKyung Hee Univ, Sch Space Res, Yongin, South Korea
Hwang, Junga
[2
,3
]
Lee, Jae-Jin
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机构:
Korea Astron & Space Sci Inst, Daejeon, South KoreaKyung Hee Univ, Sch Space Res, Yongin, South Korea
Lee, Jae-Jin
[2
]
Cho, Kyung-Suk
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机构:
Korea Astron & Space Sci Inst, Daejeon, South Korea
Univ Sci & Technol, Dept Astron & Space Sci, Daejeon, South KoreaKyung Hee Univ, Sch Space Res, Yongin, South Korea
Cho, Kyung-Suk
[2
,3
]
Yoon, Peter H.
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机构:
Kyung Hee Univ, Sch Space Res, Yongin, South Korea
Korea Astron & Space Sci Inst, Daejeon, South Korea
Univ Maryland, Inst Phys Sci & Technol, College Pk, MD 20742 USAKyung Hee Univ, Sch Space Res, Yongin, South Korea
Yoon, Peter H.
[1
,2
,4
]
机构:
[1] Kyung Hee Univ, Sch Space Res, Yongin, South Korea
[2] Korea Astron & Space Sci Inst, Daejeon, South Korea
[3] Univ Sci & Technol, Dept Astron & Space Sci, Daejeon, South Korea
[4] Univ Maryland, Inst Phys Sci & Technol, College Pk, MD 20742 USA
PLASMA-WAVE OBSERVATIONS;
ALLEN RADIATION BELTS;
ELECTRON ACCELERATION;
GEOTAIL OBSERVATIONS;
MODE WAVES;
LION ROARS;
CHORUS;
MAGNETOSHEATH;
DIFFUSION;
D O I:
10.1029/2017JA024960
中图分类号:
P1 [天文学];
学科分类号:
0704 ;
摘要:
The whistler anisotropy (or electromagnetic electron cyclotron) instability may be operative in many geomagnetic and heliospherical environments, including the radiation belt, solar wind, and the solar corona. The present investigation carries out a comparative analysis between the two-dimensional particle-in-cell simulation of weakly growing whistler anisotropy instability and the velocity moment-based two-dimensional quasi-linear theory under the assumption of bi-Maxwellian electron distribution function. It is shown that the simplified quasi-linear theory provides a qualitative agreement with the more rigorous particle-in-cell simulation, but some discrepancies are also found. Possible causes for the differences in either method are discussed, and future improvements on the theory are suggested. Potential applicability of the present finding in the context of the space and astrophysics is discussed.