Local Geometric Bounds on Generalized Entropy Evolution along Null Horizons
arXiv:2607.21770 · doi:10.1103/w5wg-m5rc
Abstract
We develop a local and covariant framework for constraining the evolution of generalized entropy along null horizons, combining classical geometric methods with constraints from quantum field theory. Building on the quantum focusing conjecture (QFC), which restricts entropy evolution along null directions, we derive a Raychaudhuri-type differential inequality for the generalized expansion that makes its local dependence on expansion and shear explicit. The resulting relation, , reveals a direct interplay between expansion and shear in controlling entropy flow: shear contributes negatively and yields a monotonic suppression of the generalized expansion in shear-dominated regimes, while expansion provides a competing geometric source term. This structure provides a local geometric formulation consistent with the QFC and clarifies its interpretation as a constraint on entropy evolution. We further show that quantum extremal surfaces correspond to configurations characterized by , whose local stability properties are governed by the same geometric data. In addition, we derive a bound on the exponential separation of nearby null generators, indicating that the same combination of expansion and shear also controls geometric instability. Our results provide a local geometric refinement of entropy bounds in semiclassical gravity and establish a direct connection between null geometry, quantum energy conditions, and entropy flow, offering a local geometric perspective on horizon thermodynamics beyond global formulations.
17 pages, published in Physical Review D
References in corpus (28)
- A bound on chaos
- Black holes and the butterfly effect
- Black holes as mirrors: quantum information in random subsystems
- Fast Scramblers
- Quantum Extremal Surfaces: Holographic Entanglement Entropy beyond the Classical Regime
- Quantum corrections to holographic entanglement entropy
- The entropy of bulk quantum fields and the entanglement wedge of an evaporating black hole
- Universality of the hydrodynamic limit in AdS/CFT and the membrane paradigm
- Maximin Surfaces, and the Strong Subadditivity of the Covariant Holographic Entanglement Entropy
- Dynamical Horizons and their Properties
- A Quantum Focussing Conjecture
- A proof of the generalized second law for rapidly changing fields and arbitrary horizon slices
- Universal Charge Diffusion and the Butterfly Effect
- Proof of the Quantum Null Energy Condition
- The Raychaudhuri equations: a brief review
- Islands in Schwarzschild black holes
- A General Proof of the Quantum Null Energy Condition
- Holographic Proof of the Quantum Null Energy Condition
- Black holes and information theory
- Island in Charged Black Holes
- Islands and Page curves of Reissner-Nordström black holes
- Null energy conditions in quantum field theory
- Singularity theorems from weakened energy conditions
- Local Modular Hamiltonians from the Quantum Null Energy Condition
- Quantum Energy Inequalities and local covariance I: Globally hyperbolic spacetimes
- Quantum thermodynamics of holographic quenches and bounds on the growth of entanglement from the QNEC
- Bare Quantum Null Energy Condition
- Entropy measures as geometrical tools in the study of cosmology