Phase transition between shock formation and stability in cosmological fluids

IF 3.6 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
David Fajman, Maciej Maliborski, Maximilian Ofner, Todd Oliynyk and Zoe Wyatt
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引用次数: 0

Abstract

We demonstrate a novel phase transition from stable to unstable fluid behaviour for fluid-filled cosmological spacetimes undergoing decelerated expansion. This transition occurs when the fluid speed of sound exceeds a critical value relative to the expansion rate of spacetime. We present an explicit relationship between α and , which subdivides the -parameter space into two regions. Using rigorous techniques, we establish stability of quiet fluid solutions in the stable region. Numerical experiments reveal that the complement of the stable region consists of unstable solutions, implying sharpness of our stability result. We provide a definitive analytical bound and high-precision numerical evidence for the exact location of the critical line separating the stable from the unstable region.
宇宙流体中激波形成与稳定性之间的相变
我们证明了一个新的相变从稳定到不稳定的流体行为的流体填充宇宙时空经历减速膨胀。当声音的流体速度超过相对于时空膨胀率的临界值时,就会发生这种转变。我们给出了α和之间的显式关系,将参数空间细分为两个区域。采用严格的技术,我们在稳定区域建立了安静流体溶液的稳定性。数值实验表明,稳定区域的补是由不稳定解组成的,表明我们的稳定性结果是清晰的。我们提供了一个明确的解析界和高精度的数值证据,以确定分离稳定和不稳定区域的临界线的确切位置。
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来源期刊
Classical and Quantum Gravity
Classical and Quantum Gravity 物理-天文与天体物理
CiteScore
7.00
自引率
8.60%
发文量
301
审稿时长
2-4 weeks
期刊介绍: Classical and Quantum Gravity is an established journal for physicists, mathematicians and cosmologists in the fields of gravitation and the theory of spacetime. The journal is now the acknowledged world leader in classical relativity and all areas of quantum gravity.
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