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Gravitational waves in the presence of viscosity

机译:在粘度存在下的引力波

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摘要

We analyze gravitational waves propagating in an isotropic cosmic fluid endowed with a bulk viscosity zeta and a shear viscosity eta, assuming these coefficients to vary with fluid density rho as rho(lambda), with lambda = 1/2 favored by experimental evidence. We give the general governing equation for the gravitational waves and focus thereafter on two examples. The first concerns waves in the very late universe, close to the Big Rip, where the fate of the cosmic fluid is dependent highly on the values of the parameters. Our second example considers the very early universe, the lepton era, the motivation for this choice being that the microscopical bulk viscosity as calculated from statistical mechanics is then at maximum. We find that the gravitational waves on such an underlying medium are damped, having a decay constant equal to the inverse of the conformal Hubble parameter. Our results turn out to be in good agreement with other viscosity-based approaches.
机译:我们分析在具有体积粘度Zeta的各向同性宇宙流体中传播的重力波和剪切粘度Eta,假设这些系数随着流体密度Rho作为rhO(λ)而变化,Lambda = 1/2受实验证据的青睐。 我们在两个示例中给出了引力波的总管和重点聚焦。 第一个涉及在非常晚的宇宙中波浪,靠近大裂纹,宇宙流体的命运依赖于参数的值。 我们的第二个例子考虑了Lepton时代的早期宇宙,这种选择的动机是从统计力学计算的显微散堆粘度最大。 我们发现这种底层介质上的引力波被阻尼,其衰减常数等于共形霍勃勃参数的倒数。 我们的结果与其他基于粘度的方法吻合良好。

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