Gravitation, the Quantum, and Bohr's Correspondence Principle
arXiv:gr-qc/0002002 · doi:10.1023/A:1026753914838
Abstract
The black hole combines in some sense both the ``hydrogen atom'' and the ``black-body radiation'' problems of quantum gravity. This analogy suggests that black-hole quantization may be the key to a quantum theory of gravity. During the last twenty-five years evidence has been mounting that black-hole surface area is indeed {\it quantized}, with {\it uniformally} spaced area eigenvalues. There is, however, no general agreement on the {\it spacing} of the levels. In this essay we use Bohr's correspondence principle to provide this missing link. We conclude that the fundamental area unit is . This is the unique spacing consistent both with the area-entropy {\it thermodynamic} relation for black holes, with Boltzmann-Einstein formula in {\it statistical physics} and with {\it Bohr's correspondence principle}.
8 pages. This essay received the Fifth Prize from the Gravity Research Foundation 1999
Cited by in corpus (33)
- Black hole spectroscopy via adiabatic invariance
- Spectra of Length and Area in 2+1 Lorentzian Loop Quantum Gravity
- On Quasinormal Modes, Black Hole Entropy, and Quantum Geometry
- Effective temperature, Hawking radiation and quasinormal modes
- Time-Dependent Schrodinger Equation for Black Hole Evaporation: no Information Loss
- Black Holes: Eliminating Information or Illuminating New Physics?
- Quantum-mechanical model of the Kerr-Newman black hole
- Area spectrum and quasinormal modes of black holes
- Precise model of Hawking radiation from the tunnelling mechanism
- Black hole quantum spectrum
- On black hole spectroscopy via adiabatic invariance
- Effective state, Hawking radiation and quasi-normal modes for Kerr black holes
- Black Hole Entropy from Spin One Punctures
- Quasi-normal modes: the "electrons" of black holes as "gravitational atoms"? Implications for the black hole information puzzle
- New aspect of critical nonlinearly charged black hole
- Discrete Black-Hole Radiation and the Information Loss Paradox
- Hawking radiation - quasi-normal modes correspondence and effective states for nonextremal Reissner-Nordström black holes
- Partition Function of the Schwarzschild Black Hole
- Discrete quantum spectrum of black holes
- The quantum emission spectra of rapidly-rotating Kerr black holes: discrete or continuous?
- Quasi Normal Modes
- Hawking radiation-quasinormal modes correspondence for large AdS black holes
- Black-hole radiation, the fundamental area unit, and the spectrum of particle species
- Spacetime Foam Model of the Schwarzschild Horizon
- Entropy spectrum of charged BTZ black holes in massive gravity's rainbow
- Entropy spectrum of (1+1) dimensional stringy black holes
- Discreteness of Space from Anisotropic Spin-Orbit Interaction
- Decoding infrared imprints of quantum origins of black holes
- Entropy spectrum of the apparent horizon of Vaidya black holes via adiabatic invariance
- Area spectrum and thermodynamics of KS black holes in Hořava gravity
- On quasi-normal modes, area quantization and Bohr correspondence principle
- Initiating the effective unification of black hole horizon area and entropy quantization with quasi-normal modes
- Natural broadening in the quantum emission spectra of higher-dimensional Schwarzschild black holes