most citedMicroscopic Conductivity of Lattice Fermions at Equilibrium - Part I: Non-Interacting Particles

12 citations · 14 across the 5 of their papers we have counts for

collaborators
Showing math-phShow all

5 papers · 1 filter

math-ph20162 cited

Microscopic Foundations of Ohm and Joule's Laws - The Relevance of Thermodynamics

J. -B. Bru, W. de Siqueira Pedra

We give a brief historical account on microscopic explanations of electrical conduction. One aim of this short review is to show that Thermodynamics is fundamental to the theoretic…

math-ph2016

Macroscopic Conductivity of Free Fermions in Disordered Media

J. -B. Bru, W. de Siqueira Pedra, C. Hertling

We conclude our analysis of the linear response of charge transport in lattice systems of free fermions subjected to a random potential by deriving general mathematical properties…

math-ph201612 cited

Microscopic Conductivity of Lattice Fermions at Equilibrium - Part I: Non-Interacting Particles

J. -B. Bru, W. de Siqueira Pedra, C. Hertling

We consider free lattice fermions subjected to a static bounded potential and a time- and space-dependent electric field. For any bounded convex region $\mathcal{R}\subset \mathbb{…

math-ph2016

Microscopic Foundations of the Meißner Effect - Thermodynamic Aspects

J. -B. Bru, W. de Siqueira Pedra

We analyze the Meißner effect from first principles of quantum mechanics. We show in particular the existence of superconducting states minimizing the magnetic free-energy of BCS-l…

math-ph2016

Diagonalizing Quadratic Bosonic Operators by Non-Autonomous Flow Equation

Volker Bach, Jean-Bernard Bru

We study a non-autonomous, non-linear evolution equation on the space of operators on a complex Hilbert space. We specify assumptions that ensure the global existence of its soluti…