paper

Quantum Interference Corrections in Electron Hydrodynamics

arXiv:2605.26223

Abstract

We show that quantum-interference corrections in an electron fluid are tightly constrained by hydrodynamic Ward identities: charge and momentum conservation protect the sectors, so the leading correction first appears in the spin-two stress sector. The resulting hydrodynamic Cooperon has a robust infrared structure that renormalizes stress relaxation, and hence the viscosity. In channel flow this lowers the viscous resistivity, producing a hydrodynamic interference signature with the opposite sign to ordinary weak localization.

5+10 pages, 2 figures

Quantum Interference Corrections in Electron Hydrodynamics · wovepaper