期刊文献+

Generalized Second Law of Thermodynamics in Parabolic LTB Inhomogeneous Cosmology

Generalized Second Law of Thermodynamics in Parabolic LTB Inhomogeneous Cosmology
原文传递
导出
摘要 We study thermodynamics of the parabolic Lemaitre-Tolman-Bondi(LTB) cosmology supported by a perfect Suid source.This model is the natural generalization of the Sat Friedmann-Robertson-Walker(FRW) universe,and describes an inhomogeneous universe with spherical symmetry.After reviewing some basic equations in the parabolic LTB cosmology,we obtain a relation for the deceleration parameter in this model.We also obtain a condition for which the universe undergoes an accelerating phase at the present time.We use the first law of thermodynamics on the apparent horizon together with the Einstein field equations to get a relation for the apparent horizon entropy in LTB cosmology.We find out that in LTB model of cosmology,the apparent horizon's entropy could be feeded by a term,which incorporates the effects of the inhomogeneity.We consider this result and get a relation for the total entropy evolution,which is used to examine the generalized second law of thermodynamics for an accelerating universe.We also verify the validity of the second law and the generalized second law of thermodynamics for a universe filled with some kinds of matters bounded by the event horizon in the framework of the parabolic LTB model. We study thermodynamics of the parabolic Lemaitre-Tolman-Bondi(LTB) cosmology supported by a perfect Suid source.This model is the natural generalization of the Sat Friedmann-Robertson-Walker(FRW) universe,and describes an inhomogeneous universe with spherical symmetry.After reviewing some basic equations in the parabolic LTB cosmology,we obtain a relation for the deceleration parameter in this model.We also obtain a condition for which the universe undergoes an accelerating phase at the present time.We use the first law of thermodynamics on the apparent horizon together with the Einstein field equations to get a relation for the apparent horizon entropy in LTB cosmology.We find out that in LTB model of cosmology,the apparent horizon’s entropy could be feeded by a term,which incorporates the effects of the inhomogeneity.We consider this result and get a relation for the total entropy evolution,which is used to examine the generalized second law of thermodynamics for an accelerating universe.We also verify the validity of the second law and the generalized second law of thermodynamics for a universe filled with some kinds of matters bounded by the event horizon in the framework of the parabolic LTB model.
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2015年第11期597-604,共8页 理论物理通讯(英文版)
基金 Supported financially by Research Institute for Astronomy&Astrophysics of Maragha(RIAAM),Iran
关键词 PARABOLIC LTB COSMOLOGY THERMODYNAMICS ENTROPY GEN parabolic LTB cosmology thermodynamics entropy gen
  • 相关文献

参考文献20

  • 1H. Moradpour,A. Sheykhi,N. Riazi,B. Wang,Kishor Adhav.Necessity of Dark Energy from Thermodynamic Arguments[J]. Advances in High Energy Physics . 2014
  • 2Ritabrata Biswas,Nairwita Mazumder,Subenoy Chakraborty.Lemaitre-Tolman-Bondi Model of the Universe and Hawking Radiation of a Dynamical Horizon[J]. International Journal of Theoretical Physics . 2012 (1)
  • 3Ninfa Radicella,Diego Pavón.Thermodynamical analysis on a braneworld scenario with curvature corrections[J]. Physics Letters B . 2011 (4)
  • 4Ahmad Sheykhi,Bin Wang.Generalized second law of thermodynamics in Gauss–Bonnet braneworld[J]. Physics Letters B . 2009 (5)
  • 5Rong-Gen Cai,Li-Ming Cao,Ya-Peng Hu.Corrected entropy-area relation and modified Friedmann equations[J]. Journal of High Energy Physics . 2008 (08)
  • 6Kari Enqvist.Lemaitre–Tolman–Bondi model and accelerating expansion[J]. General Relativity and Gravitation . 2008 (2)
  • 7Jia Zhou,Bin Wang,Yungui Gong,Elcio Abdalla.The generalized second law of thermodynamics in the accelerating universe[J]. Physics Letters B . 2007 (2)
  • 8Dawood Kothawala,Sudipta Sarkar,T. Padmanabhan.Einstein’s equations as a thermodynamic identity: The cases of stationary axisymmetric horizons and evolving spherically symmetric horizons[J]. Physics Letters B . 2007 (5)
  • 9M. Akbar,Rong-Gen Cai.Thermodynamic behavior of field equations for f ( R ) gravity[J]. Physics Letters B . 2007 (2)
  • 10M. Akbar,Rong-Gen Cai.Friedmann equations of FRW universe in scalar–tensor gravity, f ( R ) gravity and first law of thermodynamics[J]. Physics Letters B . 2006 (1)

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部