Causality Constraints on Black Hole Thermodynamics in Nonlinear Electrodynamics
- Date
- March 6 (Fri) 15:30 - 17:00, 2026 (JST)
- Speaker
-
- Kaho Yoshimura (Ph.D. Student, Graduate School of Arts and Sciences, The University of Tokyo)
- Language
- English
- Host
- Ryo Namba
Black holes exhibit thermodynamic properties and provide an important window into the quantum aspects of gravity. In this context, nonlinear electrodynamics (NLED) offers a useful framework for constructing and analyzing charged black-hole solutions beyond Maxwell theory. Requiring causality - namely, excluding superluminal signal propagation - imposes nontrivial constraints on the allowed form of the NLED Lagrangian.
In this talk, we focus on two quantities: the charge-to-mass ratio and the entropy density (entropy-to-mass squared ratio). The charge-to-mass ratio is expected to obey a monotonic behavior consistent with the Weak Gravity Conjecture, while the entropy density is also anticipated to be monotonic, reflecting the expectation that higher-energy effective theories contain more degrees of freedom. We show that these monotonic behaviors follow directly from the causality constraints on the NLED sector.
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