...
首页> 外文期刊>General Relativity and Gravitation: GRG Journal >Thermodynamics of event horizon with modified Hawking temperature in scalar-tensor gravity
【24h】

Thermodynamics of event horizon with modified Hawking temperature in scalar-tensor gravity

机译:校长重力改性霍克温度的事件视界热力学

获取原文
获取原文并翻译 | 示例

摘要

In recent past, Hawking temperature has been modified for the validity of thermodynamical laws at the event horizon in general relativity context. This lead to the introduction of modified Hawking temperature and it has been found that the modified Hawking temperature is more realistic on the event horizon. With this motivation, here we investigate the thermodynamical consistency of scalar-tensor gravity based models by examining the validity of the generalized second law of thermodynamics (GSLT) and thermodynamical equilibrium (TE) at the event horizon. In order to attain our goal, we consider a spatially flat Friedman-Robertson-Walker Universe filled with ordinary matter and the boundary of the Universe bounded by the event horizon that is in thermal equilibrium with modified Hawking temperature. Next, we calculate the general expressions for the GSLT and TE using modified Hawking temperature in the context of the more general action of scalar-tensor gravity where there is a non-minimally coupling between the scalar field and matter Lagrangian (as the chameleon field). From the general expression of GSLT, we find that the null energy condition must hold for a viable scalar-tensor model of the Universe dominated by a perfect fluid. Furthermore, in order to better understand these complicated general expressions of GSLT and TE, we explore the validity of the GSLT and TE for two viable models of scalar-tensor gravity namely Brans-Dicke gravity with a self-interacting potential and Chameleon gravity at the event horizon using special cosmological solutions. Finally, some graphical representation of the GSLT and TE have been presented. From the graphical analysis, we found that the power-law forms of the scale factor and scalar field is much favourable for the study of universal thermodynamics as compared to other choices of the scalar field and the analytic function.
机译:最近,霍金温度已经被修改为一般相对论中的事件范围内的热力学定律的有效性。这导致改变改良的霍克宁温度,并发现改良的霍金温在事件范围内更为逼真。通过这种动机,在这里,我们通过检查事件范围内的热力学(GSLT)和热力学均衡(TE)的广义第二律规律的有效性来研究基于标量的基于模型的热力学一致性。为了实现我们的目标,我们考虑了一个充满普通事件的空间平坦的弗里德曼 - 罗伯逊 - 沃克宇宙,宇宙的宇宙边界是由改变的霍克宁温度的热平衡。接下来,我们在规模 - 张力重力的更一般动作的上下文中计算GSLT和TE的一般表达式,在标量场和物质Lagrangian(作为变色龙领域)之间存在非微小耦合。从GSLT的一般表达,我们发现空能量条件必须保持由完美液体主导的宇宙的可行标量张量模型。此外,为了更好地理解GSLT和TE的这些复杂的一般表达,我们探索了GSLT和TE的有效性,用于两个可行的标量级模型的标量张力,即砖 - DICKE重力,具有自相互作用和变色龙重力使用特殊宇宙解决方案的事件视界。最后,已经呈现了GSLT和TE的一些图形表示。从图形分析来看,与标量场和分析功能的其他选择相比,尺度因子和标量场的幂律形式和标量场的幂律形式有利于研究通用热力学。

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