It is well known that the Euler characteristic number of most black holes is 2 (or 0), and that only NUT-Kerr-Newman black holes' Euler characteristic number is over 2. Therefore, it is significant to calculate the entropy in the NUT-Kerr-Newman black holes. In this paper, we calculated the entropy of boson field in the NUT-Kerr-Newman black holes in the background of the de Sitter space-time by using the improved membrane model established with the brick-wall method. The results show that if the cut-off is properly chosen, the entropy in the black holes still satisfies the Bekenstein-Hawking area law
The brick wall model is a semi-classical approach to understand the microscopic origin of black hole...
Using the membrane model which is based on the brick-wall model, we calculated the free energy and e...
Making use of brick-wall model proposed by 't Hooft, we have obtained the free energy and the entrop...
We calculate the entropy of the fermion field in the NUT-Kerr-Newman black holes in the background o...
Membrane method is used to compute the entropy of the NUT-Kerr-Newman black holes. It is found that ...
Abstract. Using quantum statistical method, we obtain the partition function of Bose field and Fermi...
Generalized master equations due to spin fields are given. We obtain the entropy of electromagnetic,...
Using 't Hooft's brick wall model and Newman-Penrose's spinor analysis, the expression of the quantu...
In this paper, by using quantum statistical methods, we directly obtain the partition function of Bo...
The brick wall model is a semiclassical approach to understand the microscopic origin of black hole ...
The brick wall model is a semiclassical approach to understand the microscopic origin of black hole ...
Using the membrane model which is developed from the brick-wall model, we calculated the bosonic and...
In this work some proposals for black-hole entropy interpretation are exposed and investigated. In p...
In this work some proposals for black-hole entropy interpretation are exposed and investigated. In p...
According to Lorentz symmetry breaking and black hole quantum tunneling radiation theory, aether-lik...
The brick wall model is a semi-classical approach to understand the microscopic origin of black hole...
Using the membrane model which is based on the brick-wall model, we calculated the free energy and e...
Making use of brick-wall model proposed by 't Hooft, we have obtained the free energy and the entrop...
We calculate the entropy of the fermion field in the NUT-Kerr-Newman black holes in the background o...
Membrane method is used to compute the entropy of the NUT-Kerr-Newman black holes. It is found that ...
Abstract. Using quantum statistical method, we obtain the partition function of Bose field and Fermi...
Generalized master equations due to spin fields are given. We obtain the entropy of electromagnetic,...
Using 't Hooft's brick wall model and Newman-Penrose's spinor analysis, the expression of the quantu...
In this paper, by using quantum statistical methods, we directly obtain the partition function of Bo...
The brick wall model is a semiclassical approach to understand the microscopic origin of black hole ...
The brick wall model is a semiclassical approach to understand the microscopic origin of black hole ...
Using the membrane model which is developed from the brick-wall model, we calculated the bosonic and...
In this work some proposals for black-hole entropy interpretation are exposed and investigated. In p...
In this work some proposals for black-hole entropy interpretation are exposed and investigated. In p...
According to Lorentz symmetry breaking and black hole quantum tunneling radiation theory, aether-lik...
The brick wall model is a semi-classical approach to understand the microscopic origin of black hole...
Using the membrane model which is based on the brick-wall model, we calculated the free energy and e...
Making use of brick-wall model proposed by 't Hooft, we have obtained the free energy and the entrop...