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A simulation study of protons heated by left/right-handed Alfvén waves generated by electromagnetic proton-proton instability 被引量:1
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作者 Jiansheng YAO yingkui zhao +3 位作者 Difa YE Yi LI Lihui CHAI Jicheng SUN 《Plasma Science and Technology》 SCIE EI CAS CSCD 2021年第12期55-62,共8页
Most protons in the solar wind belong to one of two different populations,the less dense beam protons and the denser core protons.The beam protons,with a velocity of(1-2)V_(A)(V_(A)is the local Alfvén speed),alwa... Most protons in the solar wind belong to one of two different populations,the less dense beam protons and the denser core protons.The beam protons,with a velocity of(1-2)V_(A)(V_(A)is the local Alfvén speed),always drift relative to the core protons;this kind of distribution is unstable and stimulates several kinds of wave mode.In this study,using a 2 D hybrid simulation model,we find that the original right-handed elliptically polarized Alfvén waves become linearly polarized,and eventually become right-handed and circularly polarized.Given that linearly polarized waves are a superposition of left-handed and right-handed waves,cyclotron resonance in the right-handed/left-handed component heats beam/core protons perpendicularly.The resonance between beam protons and right-handed polarized waves is stronger when the beam relative density is lower,resulting in more dramatic perpendicular heating of beam protons,whereas the situation is reversed when the beam relative density is larger. 展开更多
关键词 proton/proton instability hybrid simulation Alfvén waves
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