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Chinese Physics, 2002, Vol. 11(9): 890-893    DOI: 10.1088/1009-1963/11/9/307
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First quantum correction to entropy of Vaidya-Bonner black holes due to arbitrary spin fields

Gao Chang-Jun (高长军), Shen You-Gen (沈有根)
Shanghai Astronomical Observatory, Chinese Academy of Sciences, Shanghai 200030, China; National Astronomical Observatories, Chinese Academy of Sciences, Beijing 100012, China
Abstract  Using the improved brick-wall model, we have calculated the first quantum correction to the entropy of non-static black holes, Vaidya-Bonner black holes, due to the gravitational, electro-magnetic and neutrino fields. The result shows that both bosonic entropy and fermionic entropy are exactly proportional to the area of the event horizon. Thus, the entropy-area law still holds in such a non-static case.
Keywords:  entropy      non-static black hole      membrane model      spin  
Received:  16 March 2002      Revised:  11 April 2002      Accepted manuscript online: 
PACS:  05.70.Ce (Thermodynamic functions and equations of state)  
  97.60.Lf (Black holes)  
  05.30.Jp (Boson systems)  
  05.30.Fk (Fermion systems and electron gas)  
  95.30.Tg (Thermodynamic processes, conduction, convection, equations of state)  
  11.27.+d (Extended classical solutions; cosmic strings, domain walls, texture)  
Fund: Project supported by the National Natural Science Foundation of China (Grant Nos 19873013 and 10073006), and the Foundation of Shanghai Development for Science and Technology, China (Grant No 01-JC14035).

Cite this article: 

Gao Chang-Jun (高长军), Shen You-Gen (沈有根) First quantum correction to entropy of Vaidya-Bonner black holes due to arbitrary spin fields 2002 Chinese Physics 11 890

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