On Entropy Growth in Perturbative Scattering
arXiv:2304.13052 · doi:10.1103/PhysRevD.108.045013
Abstract
Inspired by the second law of thermodynamics, we study the change in subsystem entropy generated by dynamical unitary evolution of a product state in a bipartite system. Working at leading order in perturbative interactions, we prove that the quantum -Tsallis entropy of a subsystem never decreases, , provided that subsystem is initialized as a statistical mixture of states of equal probability. This is true for any choice of interactions and any initialization of the complementary subsystem. When this condition on the initial state is violated, it is always possible to explicitly construct a "Maxwell's demon" process that decreases the subsystem entropy, . Remarkably, for the case of particle scattering, the circuit diagrams corresponding to -Tsallis entropy are the same as the on-shell diagrams that have appeared in the modern scattering amplitudes program, and is intimately related to the nonnegativity of cross-sections.
6 pages; v2: Minor typos corrected, version to appear in PRD
References in corpus (8)
- Entanglement and correlation functions following a local quench: a conformal field theory approach
- Evolution of entanglement after a local quench
- Infrared quantum information
- Variation of Entanglement Entropy in Scattering Process
- Dressed infrared quantum information
- Relativistic effect of entanglement in fermion-fermion scattering
- Variation of entanglement entropy and mutual information in fermion-fermion scattering
- Entanglement entropy and monotones in scattering process
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