Sommerfeld’s Quantum Condition of Action and the Spectra of Quantum Schwarzschild Black Hole
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Abstract
If the situation of quantum gravity nowadays is nearly the same as that of quantum mechanics in its early time of Bohr and Sommerfeld, then a first-step study of the quantum gravity under Sommerfeld's quantum condition of action might be helpful. We present the spectra of quantum Schwarzschild black hole in non-relativistic quantum mechanics. It is found that the quantum of area is 8π/3l2p, the quantum of entropy is 2π/3kB, and the Hawking evaporation will cease when the black hole reaches the ground state m=
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LIU Liao, PEI Shou-Yong. Sommerfeld’s Quantum Condition of Action and the Spectra of Quantum Schwarzschild Black Hole[J]. Chin. Phys. Lett., 2004, 21(10): 1887-1889.
LIU Liao, PEI Shou-Yong. Sommerfeld’s Quantum Condition of Action and the Spectra of Quantum Schwarzschild Black Hole[J]. Chin. Phys. Lett., 2004, 21(10): 1887-1889.
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LIU Liao, PEI Shou-Yong. Sommerfeld’s Quantum Condition of Action and the Spectra of Quantum Schwarzschild Black Hole[J]. Chin. Phys. Lett., 2004, 21(10): 1887-1889.
LIU Liao, PEI Shou-Yong. Sommerfeld’s Quantum Condition of Action and the Spectra of Quantum Schwarzschild Black Hole[J]. Chin. Phys. Lett., 2004, 21(10): 1887-1889.
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