Open quantum systems beyond Fermi's golden rule: Diagrammatic expansion of the steady-state time-convolutionless master equations
Michael S. Ferguson, Oded Zilberberg, G. Blatter · Physical Review Research · 2021
Steady-state observables, such as occupation numbers and currents, are crucial experimental signatures in open quantum systems.The time-convolutionless (TCL) master equation, which is both exact and time-local, is an ideal candidate for the perturbative computation of such observables.We develop a diagrammatic approach to evaluate the steady-state TCL generator based on operators rather than superoperators.We obtain the steady-state occupation numbers, extend our formulation to the calculation of currents, and provide a simple physical interpretation of the diagrams.We further benchmark our method on a single noninteracting level coupled to Fermi reservoirs, where we recover the exact expansion to next-to-leading order.The low number of diagrams appearing in our formulation makes the extension to higher orders accessible.Combined, these properties make the steady-state time-convolutionless master equation an effective tool for the calculation of steady-state properties in open quantum systems.