PaperPanorama

arXiv:1512.00412·v2·Quantum Physics

Real-Time Evolution of Strongly Coupled Fermions driven by Dissipation

Emilie Huffman🇺🇸 · Debasish Banerjee🇩🇪 · Shailesh Chandrasekharan🇺🇸 · Uwe-Jens Wiese🇨🇭

PDFarXivINSPIREDOI

Abstract

We consider the real-time evolution of a strongly coupled system of lattice fermions whose dynamics is driven entirely by dissipative Lindblad processes, with linear or quadratic quantum jump operators. The fermion 2-point functions obey a closed set of differential equations, which can be solved with linear algebra methods. The staggered occupation order parameter of the t-V model decreases exponentially during the dissipative time evolution. The structure factor associated with the various Fourier modes shows the slowing down of low-momentum modes, which is due to particle number conservation. The processes with nearest-neighbor-dependent Lindblad operators have a decay rate that is proportional to the coordination number of the spatial lattice.

Comments: 15 pages, 4 figures

Citation historyopen in Citation History ↗