首页> 外文期刊>Nuclear physics, B >A non-static quantum inspired spacetime in f( R) gravity: Gravity's rainbow
【24h】

A non-static quantum inspired spacetime in f( R) gravity: Gravity's rainbow

机译: f r )重力:重力的彩虹中的非静态量子

获取原文
           

摘要

In this note we explore a non-static spacetime in quantum regime in the background off(R)gravity. The time dependent Vaidya metric which represents the spacetime of a radiating body like star is studied in an energy dependent gravity's rainbow, which is a UV completion of General Relativity. In our quest we have used gravitational collapse as the main tool. The focus is to probe the nature of singularity (black hole or naked singularity) formed out of the collapsing procedure. This is achieved via a geodesic study. For our investigation we have considered two different models off(R)gravity, namely the inflationary Starobinsky's model and the power law model. Our study reveals the fact that naked singularity is as good a possibility as black hole as far as the central singularity is concerned. Via a proper fine tuning of the initial data, we may realize both black hole or naked singularity as the end state of the collapse. Thus this study is extremely important and relevant in the light of the Cosmic Censorship hypothesis. The most important result derived from the study is that gravity's rainbow increases the tendency of formation of naked singularities. We have also deduced the conditions under which the singularity will be a strong or weak curvature singularity. Finally in our quest to know more about the model we have performed a thermodynamical study. Throughout the study we have obtained results which involve deviation from the classical set-up. Such deviations are expected in a quantum evolution and can be attributed to the quantum fluctuations that our model suffers from. It is expected that this study will enhance our knowledge about quantization of gravity and subsequently about the illusive theory of quantum gravity.
机译:在本说明中,我们在后台OFF(R)重力中探索量子制度的非静态时空。在能量依赖性重力的彩虹中研究了表示像星形的辐射体如星形的时空的时间依赖的Vaidya指标,这是一般相对性的UV完成。在我们的追求中,我们使用引力崩溃作为主要工具。重点是探讨由折叠程序形成的奇点(黑洞或裸奇形)的性质。这是通过测地研究实现的。对于我们的调查,我们已经考虑了两种不同的型号(R)重力,即通货膨胀的Starobinsky的模型和权力法模型。我们的研究表明,与中央奇点关注一样,裸体奇点与黑洞的可能性很好。通过初始数据的适当微调,我们可以以崩溃的最终状态实现黑洞或裸体奇点。因此,根据宇宙审查假设,这项研究非常重要和相关。源自研究的最重要结果是,重力的彩虹增加了赤裸奇点形成的趋势。我们还推断了奇点将是强烈或疲软的曲率奇异性的条件。最后在我们寻求了解更多关于我们进行了热力学研究的模型。在整个研究中,我们已经获得了涉及偏离经典设置的结果。这种偏差预计在量子演变中,可以归因于我们模型遭受的量子波动。预计这项研究将提高我们关于重力量化的知识,以及随后对量子重力的虚幻理论。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号