paper

Quantum Inequalities from the Second Law

arXiv:2608.11817 · doi:10.1007/s10773-026-06434-x

Abstract

Quantum field theory allows local violations of the classical energy conditions, such as regions of negative energy density. The Ford-Roman quantum inequalities quantify how negative these regions can be and for how long. We present a derivation of these inequalities from the second law of thermodynamics, in an operational framework that couples the field to a small thermal detector. The detector acts as a physical probe of the field's energy density and, by the non-negativity of the entanglement entropy between the two systems, one can show that its heat loss is bounded from below by a state-independent quantity.

Published in the International Journal of Theoretical Physics

Quantum Inequalities from the Second Law · wovepaper