English

Wave Functions for Quantum Black Hole Formation in Scalar Field Collapse

General Relativity and Quantum Cosmology 2009-10-31 v3

Abstract

We study quantum mechanically the self-similar black hole formation by collapsing scalar field and find the wave functions that give the correct semiclassical limit. In contrast to classical theory, the wave functions for the black hole formation even in the supercritical case have not only incoming flux but also outgoing flux. From this result we compute the rate for the black hole formation. In the subcritical case our result agrees with the semiclassical tunneling rate. Furthermore, we show how to recover the classical evolution of black hole formation from the wave function by defining the Hamilton-Jacobi characteristic function as W=ImlnψW = \hbar {\rm Im} \ln \psi. We find that the quantum corrected apparent horizon deviates from the classical value only slightly without any qualitative change even in the critical case.

Keywords

Cite

@article{arxiv.gr-qc/9907032,
  title  = {Wave Functions for Quantum Black Hole Formation in Scalar Field Collapse},
  author = {Dongsu Bak and Sang Pyo Kim and Sung Ku Kim and Kwang-Sup Soh and Jae Hyung Yee},
  journal= {arXiv preprint arXiv:gr-qc/9907032},
  year   = {2009}
}

Comments

RevTex, 14 pages, no figures; Eq. (36) and references added; revised version for PRD