Pathway selectivity in time-resolved spectroscopy using two-photon coincidence counting with quantum entangled photons

Author:

Fujihashi Yuta1ORCID,Ishizaki Akihito23ORCID,Shimizu Ryosuke14

Affiliation:

1. Department of Engineering Science, The University of Electro-Communications 1 , Chofu 182-8585, Japan

2. Institute for Molecular Science, National Institutes of Natural Sciences 2 , Okazaki 444-8585, Japan

3. Graduate Institute for Advanced Studies, SOKENDAI 3 , Okazaki 444-8585, Japan

4. Institute for Advanced Science, The University of Electro-Communications 4 , Chofu 182-8585, Japan

Abstract

Ultrafast optical spectroscopy is a powerful technique for studying the dynamic processes of molecular systems in condensed phases. However, in molecular systems containing many dye molecules, the spectra can become crowded and difficult to interpret owing to the presence of multiple nonlinear optical contributions. In this work, we theoretically propose time-resolved spectroscopy based on the coincidence counting of two entangled photons generated via parametric down-conversion with a monochromatic laser. We demonstrate that the use of two-photon counting detection of entangled photon pairs enables the selective elimination of the excited-state absorption signal. This selective elimination cannot be realized with classical coherent light. We anticipate that the proposed spectroscopy will help simplify the spectral interpretation of complex molecular and material systems comprising multiple molecules.

Funder

Japan Society for the Promotion of Science

Japan Society for the Promotion of Science London

Publisher

AIP Publishing

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