arXiv · 2102.01183
Quantum interference and the time-dependent radiation of nanojunctions
Abstract
Using the recently developed time-dependent Landauer-B\"uttiker formalism and Jefimenko's retarded solutions to the Maxwell equations, we show how to compute the time-dependent electromagnetic field produced by the charge and current densities in nanojunctions out of equilibrium. We then apply this formalism to a benzene ring junction, and show that geometry-dependent quantum interference effects can be used to control the magnetic field in the vicinity of the molecule. Then, treating the molecular junction as a quantum emitter, we demonstrate clear signatures of the local molecular geometry in the non-local radiated power.
Explore related subjects
Keep this discovery
Michael Ridley, Lev Kantorovich, Robert van Leeuwen, Riku Tuovinen. 2021-02-01. Quantum interference and the time-dependent radiation of nanojunctions. https://doi.org/10.1103/physrevb.103.115439
Cite the original work for its findings. Save a collection to share your selection of sources.