Black Hole Formation from Collapsing Quark Binding String Fluid in \(\boldsymbol{f(R,T)}\) Theory

IF 1.2 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS
Umber Sheikh, Nida Ramzan, Yousra Aziz, Richard Pincak
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引用次数: 0

Abstract

We consider the gravitational collapse of a quark binding string fluid in \(f(R,T)\) theory of gravity. A quark binding string state of a fluid is expected to occur as a combination of quark matter and strings in the initial phases of the Universe. Assuming the collapse of this quark fluid, the junction conditions are derived, taking famous FRW and Schwarzschild space-times as the interior and exterior regions, respectively. We have assumed that \(f(R,T)=\alpha R+\beta T\), (\(\alpha\), \(\beta\) are positive constants). The collapsing gravitational mass is calculated under the conditions of a trace of the energy momentum tensor and a constant scalar curvature. It is calculated how long and how far the apparent horizons form. The constant term \(f(R_{0},T_{0})\) is a factor which delays the collapse. The event horizon formation is followed by creation of an apparent horizon, which results in a black hole. Additionally, the existence of the string tension lengthens the period before the horizon forms. As a result, it is anticipated that the Universe’s black holes are expected to originate during the quark binding string phase.

夸克束缚弦流体在(\boldsymbol{f(R,T)}\)中坍缩产生的黑洞形成理论
我们考虑的是\(f(R,T)\)引力理论中夸克结合弦流体的引力坍缩。在宇宙的初始阶段,夸克结合弦流体状态预计会作为夸克物质和弦的组合而出现。假设这种夸克流体发生坍缩,以著名的 FRW 时空和施瓦兹柴尔德时空分别作为内部和外部区域,推导出了交界条件。我们假设\(f(R,T)=\alpha R+\beta T\), (\(\alpha\)\(\beta\)是正常数)。坍缩引力质量是在能量动量张量的痕量和标量曲率不变的条件下计算得出的。计算视角形成的时间和距离。常数项 \(f(R_{0},T_{0})\)是一个延迟坍缩的因子。事件视界形成后会产生视视界,从而形成黑洞。此外,弦张力的存在延长了视界形成之前的时间。因此,预计宇宙黑洞将起源于夸克结合弦阶段。
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来源期刊
Gravitation and Cosmology
Gravitation and Cosmology ASTRONOMY & ASTROPHYSICS-
CiteScore
1.70
自引率
22.20%
发文量
31
审稿时长
>12 weeks
期刊介绍: Gravitation and Cosmology is a peer-reviewed periodical, dealing with the full range of topics of gravitational physics and relativistic cosmology and published under the auspices of the Russian Gravitation Society and Peoples’ Friendship University of Russia. The journal publishes research papers, review articles and brief communications on the following fields: theoretical (classical and quantum) gravitation; relativistic astrophysics and cosmology, exact solutions and modern mathematical methods in gravitation and cosmology, including Lie groups, geometry and topology; unification theories including gravitation; fundamental physical constants and their possible variations; fundamental gravity experiments on Earth and in space; related topics. It also publishes selected old papers which have not lost their topicality but were previously published only in Russian and were not available to the worldwide research community
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