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Post-Newtonian Corrections to Toomre's Criterion

机译:牛顿后对托姆雷准则的更正

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The gravitational stability of a two-dimensional self-gravitating and differentially rotating gaseous disk in the context of post-Newtonian (PN) theory is studied. Using the perturbative method and applying the second iterated equations of PN approximation, the relativistic version of the dispersion relation for the propagation of small perturbations is found. We obtain the PN version of Toomre's local stability criterion by utilizing this PN dispersion relation. In other words, we find relativistic corrections to Toomre's criterion in the first PN approximation. Two stability parameters, η and μ, related to gravity and pressure are introduced. We illustrate how these parameters determine the stability of the Newtonian and PN systems. Moreover, we show that, in general, the differentially rotating fluid disk is more stable in the context of PN theory relative to the Newtonian one. Also, we explicitly show that although the relativistic PN corrections destabilize nonrotating systems, they have the stabilizing role in the rotating thin disks. Finally, we apply the results to the relativistic disks around hypermassive neutron stars and find that although Newtonian description predicts the occurrence of local fragmentations, PN theory remains in agreement with the relevant simulations and rules out the existence of local fragmentations.
机译:在后牛顿(PN)理论的背景下,研究了二维自重和微分旋转气态圆盘的重力稳定性。使用微扰方法并应用PN近似的第二个迭代方程,发现了小扰动传播的色散关系的相对论形式。通过利用该PN色散关系,我们获得了Toomre局部稳定性准则的PN版本。换句话说,我们在第一个PN近似中找到对Toomre准则的相对论性更正。介绍了与重力和压力有关的两个稳定性参数η和μ。我们说明了这些参数如何确定牛顿和PN系统的稳定性。而且,我们表明,通常,在PN理论的背景下,与牛顿理论相比,差动旋转流体盘更稳定。同样,我们明确表明,尽管相对论PN校正使非旋转系统不稳定,但它们在旋转的薄盘中具有稳定作用。最后,我们将结果应用于高质量中子星周围的相对论圆盘,发现尽管牛顿描述预言了局部碎片的发生,但PN理论与相关模拟保持一致,并排除了局部碎片的存在。

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