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For most black holes in string theory, the Schwarzschild radius in string units decreases as the string coupling is reduced. We formulate a correspondence principle, which states that (i) when the size of the horizon drops below the size of a string, the typical black hole state becomes a typical state of strings and D-branes with the same charges, and (ii) the mass does not change abruptly during the transition. This provides a statistical interpretation of black hole entropy. This approach does not yield the numerical coefficient, but gives the correct dependence on mass and charge in a wide range of cases, including neutral black holes.
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Gary T. Horowitz
University of California System
Joseph Polchinski
Harvard University
Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields
University of California, Santa Barbara
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Horowitz et al. (Thu,) studied this question.
synapsesocial.com/papers/6a0f626392676d5461fcaa3b — DOI: https://doi.org/10.1103/physrevd.55.6189