Massless radiation from heavy rotating string and Kerr/string correspondence
arXiv:0909.1617 · doi:10.1016/j.nuclphysb.2009.10.026
Abstract
We calculate emission rates of a massless state from a highly excited rotating string in perturbative bosonic open string theory. By averaging huge degeneracies of initial string states with specifying the mass and a single component of the angular momentum, we find thermal spectrum in a wide range of the angular momentum. We derive the temperature that characterizes the thermal spectrum from the partition function of a single rotating string from which we also find the entropy and the angular velocity of rotating strings. We also argue based on these quantities the Horowitz-Polchinski correspondence principle between rotating strings/Kerr black holes for non-extremal as well as extremal cases. In the parameter region where the Kerr black holes exist, the thermal spectrum is comparable to scalar emissions from a rotating black hole.
21 pages, minor corrections, version to appear in Nucl.Phys. B
References in corpus (3)
Cited by in corpus (7)
- Chaotic scattering of highly excited strings
- The correspondence between rotating black holes and fundamental strings
- The chaotic emergence of thermalization in highly excited string decays
- On Non-Chiral Extension of Kerr/CFT
- Pair Production of small Black Holes in Heterotic String Theories
- Chaotic and Thermal Aspects in the Highly Excited String S-Matrix
- Emission spectrum of soft massless states from heavy superstring