Einstein-Horndeski gravity and the ultra slowly evaporating black hole

IF 4.5 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Physics Letters B Pub Date : 2025-03-01 Epub Date: 2025-02-11 DOI:10.1016/j.physletb.2025.139303
Xiao Liang , Yu-Sen An , Chen-Hao Wu , Ya-Peng Hu
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Abstract

In this work, we study the evaporation behaviors of asymptotically flat charged black holes in the Einstein-Horndeski gravity theory. Based on the thermodynamics of the Horndeski black hole, we present a physical understanding of the scalar charge of the Horndeski black hole and also clarify its connection to the Einstein vector theory. As the presence of non-minimal coupling, the evaporating behaviors of the Horndeski black hole are vastly different from the Reissner-Nordstrom (RN) black hole case. Due to the different spacetime and electric field structures, the evaporation rate of the Horndeski black hole will slow down at the late stage of evaporation and thus gain a lifetime much longer than the RN black hole. These results illuminate the effect of non-minimally coupled matters on the black hole evaporation and provide clues to search for these matter fields in future observations.
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爱因斯坦-霍恩德斯基引力和超缓慢蒸发黑洞
本文研究了爱因斯坦-霍恩德斯基引力理论中渐近扁平带电黑洞的蒸发行为。基于Horndeski黑洞的热力学,我们提出了Horndeski黑洞标量电荷的物理理解,并澄清了它与爱因斯坦矢量理论的联系。由于非极小耦合的存在,Horndeski黑洞的蒸发行为与Reissner-Nordstrom (RN)黑洞的蒸发行为有很大的不同。由于不同的时空和电场结构,Horndeski黑洞的蒸发速率在蒸发后期会减慢,因此其寿命要比RN黑洞长得多。这些结果阐明了非最小耦合物质对黑洞蒸发的影响,并为在未来的观测中寻找这些物质场提供了线索。
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来源期刊
Physics Letters B
Physics Letters B 物理-物理:综合
CiteScore
9.10
自引率
6.80%
发文量
647
审稿时长
3 months
期刊介绍: Physics Letters B ensures the rapid publication of important new results in particle physics, nuclear physics and cosmology. Specialized editors are responsible for contributions in experimental nuclear physics, theoretical nuclear physics, experimental high-energy physics, theoretical high-energy physics, and astrophysics.
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