statistical mechanics

Quantum statistical mechanical gauge invariance

arXiv:2509.20494

summary

The paper introduces a quantum shifting superoperator to describe gauge transformations in quantum many‑body statistical mechanics, deriving exact equilibrium sum rules that link local force and hyperforce densities and discussing extensions to quantum hyperdensity functional theory and nonequilibrium settings.

Abstract

We address gauge invariance in the statistical mechanics of quantum many-body systems. The gauge transformation acts on the position and momentum degrees of freedom and it is represented by a quantum shifting superoperator that maps quantum observables onto each other. The shifting superoperator is anti-self-adjoint and it has noncommutative Lie algebra structure. These properties induce exact equilibrium sum rules that connect locally-resolved force and hyperforce densities for any given observable. We argue that the framework is amenable to tight integration into quantum hyperdensity functional theory and that it generalizes naturally to nonequilibrium.

5 pages, 1 figure; see also complementary arXiv:2605.26650

Topics & keywords

#gauge invariance#quantum many-body systems#superoperator#sum rules#hyperdensity functional theoryquantum shifting superoperatoranti-self-adjointnoncommutative Lie algebraforce densityhyperforce densityequilibrium sum rules
Quantum statistical mechanical gauge invariance · wovepaper