Physics
Scientific paper
Nov 1997
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1997phrvd..56.6698s&link_type=abstract
Physical Review D (Particles, Fields, Gravitation, and Cosmology), Volume 56, Issue 10, 15 November 1997, pp.6698-6701
Physics
37
Quantum Aspects Of Black Holes, Evaporation, Thermodynamics, Quantum Field Theory In Curved Spacetime, Black Holes
Scientific paper
We study the thermodynamics of a Dirac field in the background of a (1+1)-dimensional charged black hole; the Klein-Gordon equation and Dirac equation are resolved, respectively, with the 't Hooft boundary condition and ``quasiperiodic'' boundary condition. The corresponding wave functions are calculated and the expressions of free energy and entropies are given, respectively, which shows that the fermionic entropy has the same expression as that in the bosonic one, except that the coefficient is different.
Chen Da-Ming
Shen You-Gen
Zhang Tong-Jie
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