Nonlinear optical spectroscopy of open quantum systems
Abstract
The development of experimental techniques at the nanoscale has enabled the performance of spectroscopic measurements on single-molecule current-carrying junctions. These experiments serve as a natural intersection for the research fields of optical spectroscopy and molecular electronics. We present a pedagogical comparison between the perturbation theory expansion of standard nonlinear optical spectroscopy and the (non-self-consistent) perturbative diagrammatic formulation of the nonequilibrium Green’s functions method (which is widely used in molecular electronics), highlighting their similarities and differences. By comparing the two approaches, we argue that the optical spectroscopy of open quantum systems must be analyzed within the more general Green’s function framework.
Article Details
Journal Info
The Journal of Chemical Physics
American Institute of Physics
Authors (4)
Haoran Sun
State Key Laboratory of Rare Earth Resource Utilization
Upendra Harbola
Department of Inorganic and Physical Chemistry, Indian Institute of Science 2 , Bangalore 560012,
Shaul Mukamel
Department of Chemistry, University of California
Michael Galperin
School of Chemistry, Tel Aviv University 4 , Tel Aviv 6997801,