The polarized-signal density matrix: A practical way to recover molecular frame information from isotropic samples
Abstract
We present a novel approach to model ultrafast time-dependent nonlinear optical polarization sensitive signals emitted from randomly oriented molecules. By projecting the laboratory-frame analyzer polarization axis into the molecular-frame and linking that axis with the density matrix through a tensor product, we demonstrate an approach to find a specific molecular orientation that yields a good approximation to simulated four-wave mixing signals produced by the same model but with averaging over molecular orientation.
Article Details
Journal Info
The Journal of Chemical Physics
American Institute of Physics
Authors (5)
Richard L. Thurston
Chemical Sciences Division, Lawrence Berkeley National Laboratory 1 , Berkeley, California 94720,
Niranjan H. Shivaram
Department of Physics and Astronomy, Purdue University 2 , West Lafayette, Indiana 47907,
Thorsten Weber
Chemical Sciences Division, Lawrence Berkeley National Laboratory 1 , Berkeley, California 94720,
Liang Z. Tan
The Molecular Foundry
Daniel S. Slaughter
Chemical Sciences Division, Lawrence Berkeley National Laboratory 1 , Berkeley, California 94720,