English

Bargmann-Wigner Formulation and Superradiance Problem of Bosons and Fermions in Kerr Space-time

General Relativity and Quantum Cosmology 2018-03-22 v1

Abstract

The superradiance phenomena of massive bosons and fermions in the Kerr spacetime are studied in the Bargmann-Wigner formulation. In case of bi-spinor, the four independent components spinors correspond to the four bosonic freedom: one scalar and three vectors uniquely. The consistent description of the Bargmann-Wigner equations between fermions and bosons shows that the superradiance of the type with positive energy (0<ω)(0<\omega) and negative momentum near horizon (pH<0)(p_{\rm H}<0) is shown not to occur. On the other hand, the superradiance of the type with negative energy (ω<0)(\omega<0) and positive momentum near horizon (0<pH)(0<p_{\rm H}) is still possible for both scalar bosons and spinor fermions.

Keywords

Cite

@article{arxiv.1502.03880,
  title  = {Bargmann-Wigner Formulation and Superradiance Problem of Bosons and Fermions in Kerr Space-time},
  author = {Masakatsu Kenmoku and Y. M. Cho},
  journal= {arXiv preprint arXiv:1502.03880},
  year   = {2018}
}