Second law from the Noether current on null hypersurfaces
Antoine Rignon-Bret

TL;DR
This paper explores the balance law of surface charges and entropy on null hypersurfaces, proposing new definitions of dynamical entropy related to black hole horizons and their properties during gravitational collapse.
Contribution
It introduces generalized entropy balance laws on null hypersurfaces and compares two definitions of dynamical entropy, connecting them to gravitational flux and symmetry transformations.
Findings
Dynamical entropy increases during spherical collapse.
Two distinct definitions of entropy are identified and analyzed.
The proposed entropy satisfies the first law locally for dynamical black holes.
Abstract
I study the balance law equation of surface charges in the presence of background fields. The construction allows a unified description of Noether's theorem for both global and local symmetries. From the balance law associated with some of these symmetries, I will discuss generalizations of Wald's Noether entropy formula and general entropy balance laws on null hypersurfaces based on the null energy conditions, interpreted as an entropy creation term. The entropy is generally the so-called improved Noether charge, a quantity that has recently been investigated by many authors, associated to null future-pointing diffeomorphisms. These local and dynamical definitions of entropy on the black hole horizon differ from the Bekenstein-Hawking entropy through terms proportional to the first derivative of the area along the null geodesics. Two different definitions of the dynamical entropy are…
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Taxonomy
TopicsBlack Holes and Theoretical Physics · Astrophysical Phenomena and Observations · Cosmology and Gravitation Theories
