English

Quantum Tunneling and Unitarity Features of an S-matrix for Gravitational Collapse

High Energy Physics - Theory 2010-01-06 v1

Abstract

Starting from the semiclassical reduced-action approach to transplanckian scattering by Amati, Veneziano and one of us and from our previous quantum extension of that model, we investigate the S-matrix expression for inelastic processes by extending to this case the tunneling features previously found in the region of classical gravitational collapse. The resulting model exhibits some non-unitary S-matrix eigenvalues for impact parameters b < b_c, a critical value of the order of the gravitational radius R = 2 G sqrt(s), thus showing that some (inelastic) unitarity defect is generally present, and can be studied quantitatively. We find that S-matrix unitarity for b < b_c is restored only if the rapidity phase-space parameter y is allowed to take values larger than the effective coupling G s / hbar itself. Some features of the resulting unitary model are discussed.

Keywords

Cite

@article{arxiv.0909.4523,
  title  = {Quantum Tunneling and Unitarity Features of an S-matrix for Gravitational Collapse},
  author = {M. Ciafaloni and D. Colferai},
  journal= {arXiv preprint arXiv:0909.4523},
  year   = {2010}
}

Comments

28 pages, 11 figures