具有渐近尘埃或渐近辐射状态方程的宇宙学爱因斯坦- $$\lambda $$ -完美流体解决方案

IF 1.4 3区 物理与天体物理 Q2 PHYSICS, MATHEMATICAL Annales Henri Poincaré Pub Date : 2024-02-09 DOI:10.1007/s00023-024-01416-3
Helmut Friedrich
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引用次数: 0

摘要

本文介绍了渐近尘埃和渐近辐射状态方程的概念。有了这些对众所周知的尘埃或(非相干)辐射状态方程的非线性概括,完美流体方程就失去了任何保角协方差或特权。我们分析了这些状态方程引起的保角场方程。结果表明,带有渐近辐射状态方程的爱因斯坦-(\lambda \)-完全流体方程允许大量的考奇数据集,这些数据集会发展成在未来允许平滑共形边界的解,以及在未来允许平滑扩展的解。对于渐近尘埃状态方程,目前还没有关于未来渐近行为的明确结果。
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Cosmological Einstein-\(\lambda \)-Perfect-Fluid Solutions with Asymptotic Dust or Asymptotic Radiation Equations of State

This article introduces the notions of asymptotic dust and asymptotic radiation equations of state. With these non-linear generalizations of the well known dust or (incoherent) radiation equations of state the perfect-fluid equations lose any conformal covariance or privilege. We analyse the conformal field equations induced with these equations of state. It is shown that the Einstein-\(\lambda \)-perfect-fluid equations with an asymptotic radiation equation of state allow for large sets of Cauchy data that develop into solutions which admit smooth conformal boundaries in the future and smooth extensions beyond. In the case of asymptotic dust equations of state sharp results on the future asymptotic behaviour are not available yet.

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来源期刊
Annales Henri Poincaré
Annales Henri Poincaré 物理-物理:粒子与场物理
CiteScore
3.00
自引率
6.70%
发文量
108
审稿时长
6-12 weeks
期刊介绍: The two journals Annales de l''Institut Henri Poincaré, physique théorique and Helvetica Physical Acta merged into a single new journal under the name Annales Henri Poincaré - A Journal of Theoretical and Mathematical Physics edited jointly by the Institut Henri Poincaré and by the Swiss Physical Society. The goal of the journal is to serve the international scientific community in theoretical and mathematical physics by collecting and publishing original research papers meeting the highest professional standards in the field. The emphasis will be on analytical theoretical and mathematical physics in a broad sense.
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