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Temperature and Energy of 4-dimensional Black Holes from Entropic Force
Liu Yuxiao #,Wang Yongqiang *,Wei Shaowen
Institute of Theoretical Physics, Lanzhou University
*Correspondence author
#Submitted by
Subject:
Funding: the National Natural Science Foundation of China (No.No. 10705013), the Key Project of Chinese Ministry of Education (No.No. 109153), the DoctoralProgram Foundation of Institutions of Higher Education of China (No.No. 20070730055 and No. 20090211110028)
Opened online:22 June 2010
Accepted by: none
Citation: Liu Yuxiao ,Wang Yongqiang ,Wei Shaowen .Temperature and Energy of 4-dimensional Black Holes from Entropic Force[OL]. [22 June 2010] http://en.paper.edu.cn/en_releasepaper/content/4376501
 
 
We investigate the temperature and energy on holographic screens for 4-dimensional black holes with the entropic force idea proposed by Verlinde. We find that the “Unruh-Verlinde temperature” is equal to the Hawking temperature on the horizon and can be considered as a generalize Hawking temperature on the holographic screen outside the horizons. The energy on the holographic screen is not the black hole mass $M$ but the reduced mass $M_0$, which is related to the black hole parameters. With the replacement of the black hole mass $M$ by the reduced mass $M_0$, the entropic force can be written as $F= frac{GmM_0}{r^2}$, which could be tested by experiments.
Keywords:Black Holes;Entropic Force;Energy;Temperature
 
 
 

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