Quantum Scalar Field Dynamics On A Maximally Sliced Two-sided AdS Black Hole Spacetime
Anurag Kaushal, Naveen S. Prabhakar, Spenta R. Wadia

TL;DR
This paper analyzes the semi-classical dynamics of scalar fields in a maximally sliced two-sided AdS black hole spacetime, providing explicit solutions and a Hamiltonian framework within the AdS/CFT correspondence.
Contribution
It introduces a gauge-invariant Hamiltonian formulation for scalar fields in maximally sliced AdS black holes, with explicit solutions for the BTZ case and boundary operator dynamics.
Findings
Explicit maximal slicing solution for BTZ black hole
Construction of a finite, time-dependent Hamiltonian
Modes that mix boundary operators across horizons
Abstract
We study the semi-classical dynamics of a scalar field in the background of a black hole in an asymptotically AdS (AAdS) spacetime, in the framework of the Hamiltonian formulation of General Relativity. The small diffeomorphism (gauge) symmetries generated by the Hamiltonian and momentum constraints are completely fixed by the maximal slicing and spatial harmonic/Dirac gauge conditions after which the residual phase space degrees of freedom are gauge invariant. While many of our results are valid for AAdS spacetimes, we mainly discuss the case of the static BTZ solution. We present the explicit solution for the smooth maximal slicing of the fully extended BTZ solution where the spatial slices cut across the horizons, asymptote to the usual Schwarzschild slices, do not include the past and future singularities, and for which the lapse remains non-zero at the bifurcate…
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Taxonomy
TopicsBlack Holes and Theoretical Physics · Noncommutative and Quantum Gravity Theories · Cosmology and Gravitation Theories
