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Density fluctuation dynamics in a dissipative self-gravitating dilute gas revisited

机译:重新启动耗散自重稀释气体中的密度波动动态

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The analysis of the behavior of density fluctuations in a dissipative self gravitating gas in the linear regime is revisited. A factorization for the dispersion relation given by approximate roots is proposed, which is analogous to the one introduced in the case without gravitational field. The threshold for the onset of a gravitational instability, namely Jeans wavenumber, is found to be unaltered by the presence of thermal and viscous dissipation. However, the behavior of damped modes does not correspond to the usual Rayleigh-Brillouin spectrum when the gravitational field is taken into account. Additional to the usual central Rayleigh peak and Brillouin doublet, both corrected due to the presence of the field, non-Lorentizan terms are included in the structure factor. These terms are larger in the presence of the gravitational field and may lead in principle to relevant differences in the general properties of the spectrum. The possible mathematical origin of these modifications is briefly discussed.
机译:重新判断了线性制度中耗散自身重力气体中密度波动的行为的分析。提出了通过近似根给出的分散关系的分解,这类似于在没有引力场的情况下引入的那个。发现重力不稳定的阈值,即牛仔裤波数,通过存在热和粘性耗散来灭绝。然而,当考虑引力场时,阻尼模式的行为与通常的瑞利布里渊频谱相对应。由于现场存在而校正通常校正的常规中央Rayleigh峰和Brillouin Doublet,则非Lorentizan术语包括在结构因子中。这些术语在引力场的存在下较大,可能原则上导致光谱的一般性质的相关差异。简要讨论了这些修改的可能的数学来源。

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