Physics
Scientific paper
Dec 2002
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2002nmgm.meet.1293m&link_type=abstract
"THE NINTH MARCEL GROSSMANN MEETING On Recent Developments in Theoretical and Experimental General Relativity, Gravitation and R
Physics
Scientific paper
Black holes and hydrogen atoms have one feature in common: Both have just three independent, classical degrees of freedom. Although quantum field theoretical investigations of the hydrogen atom reveal an enormous amount of quantum mechanical degrees of freedom related to the virtual electron-positron pairs and photons, the quantum mechanical properties of the hydrogen atom can, as an excellent approximation, be described by its Schrödinger equation which takes into account the three classical degrees of freedom only. We suggest an analogous equation for black holes. Our equation takes into account the three classical degrees of freedom only, and predicts the mass, electric charge and angular momentum spectra of black holes.
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