磁化量子等离子体对Jeans不稳定性的影响

A. Patidar, Hemlata Joshi, Sonali Patidar, R. Pensia, Shaheen Mansuri
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引用次数: 0

摘要

摘要研究了磁场存在下量子等离子体对Jeans不稳定性的影响,得到了平行方向和垂直方向的色散关系,表明在中等温度高密度状态下,量子等离子体对Jeans不稳定性的生长速率具有稳定作用。通过图形表示说明了磁场对琼斯准则的影响。带量子效应的磁场对带电粒子运动的影响涉及到加速的基本性质,高电离粒子的输运对于磁化等离子体的限制的众所周知的应用是重要的。本文分析地讨论了磁场对白矮星的影响。高磁化白矮星的质量-半径关系与非磁化白矮星的质量-半径关系不同,这导致了一个修正的超级钱德拉舍卡质量极限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of magnetized quantum plasma on Jeans instability
Abstract The influence of quantum plasma on Jeans instability is investigated in the presence of magnetic fields, and the dispersion relation obtained in both parallel and perpendicular directions has shown the stabilizing effect on the growth rate of Jeans instability with a moderate temperature high-density regime. The influence of the magnetic field on the Jeans criteria is illustrated through the graphical representation. The inclusion of magnetic fields with quantum effect on the motion of a charged particle involves the essential properties of acceleration and the transport of highly ionized particles is important in connection with a well-known application of the confinement of magnetized plasma. In this paper, we analytically discuss the effect of magnetic field on white dwarfs. The mass-radius relation of highly magnetized white dwarfs is different from their non-magnetic equivalent and leads to a modified super-Chandrashekhar mass limit.
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