Two-point function of a quantum scalar field in the interior region of a Kerr black hole
Noa Zilberman, Marc Casals, Amos Ori, Adrian C. Ottewill

TL;DR
This paper derives new expressions for the two-point function of a quantum scalar field inside a Kerr black hole, facilitating future quantum effect calculations in this region.
Contribution
It provides the first known expression for the two-point function inside a Kerr black hole, using a novel method relating Unruh and Eddington modes.
Findings
Derived the two-point function inside the black hole.
Re-derived the outside two-point function with a new method.
Provided expressions for stress-energy tensor components inside the black hole.
Abstract
Quantum field effects on a classical background spacetime may be obtained from the semiclassical equations of General Relativity with the expectation value of the stress-energy tensor of the quantum field as a source. This expectation value can be calculated from Hadamard's elementary two-point function, which in practice is given in terms of sums of products of field modes evaluated at two spacetime points. We derive expressions for the two-point function for a massless scalar field in the Unruh state on a Kerr black hole spacetime. Our main result in this paper is a novel expression valid when the two points lie inside the black hole; we also (re-)derive, using a new method, the known expression valid when the two points lie outside the black hole. We achieve these expressions by finding relationships between Unruh modes, defined in terms of the retarded Kruskal coordinate, and…
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Taxonomy
TopicsQuantum Electrodynamics and Casimir Effect · Geophysics and Sensor Technology · Mechanical and Optical Resonators
