Experimental upper bounds for resonance-enhanced entangled two-photon absorption cross section of indocyanine green

Author:

He Manni1ORCID,Hickam Bryce P.1ORCID,Harper Nathan1ORCID,Cushing Scott K.1ORCID

Affiliation:

1. Division of Chemistry and Chemical Engineering, California Institute of Technology , Pasadena, California 91125, USA

Abstract

Resonant intermediate states have been proposed to increase the efficiency of entangled two-photon absorption (ETPA). Although resonance-enhanced ETPA (r-ETPA) has been demonstrated in atomic systems using bright squeezed vacuum, it has not been studied in organic molecules. We investigate for the first time r-ETPA in an organic molecular dye, indocyanine green (ICG), when excited by broadband entangled photons in near-IR. Similar to many reported virtual state mediated ETPA (v-ETPA) measurements, no r-ETPA signals are measured, with an experimental upper bound for the cross section placed at 6(±2) × 10−23 cm2. In addition, the classical resonance-enhanced two-photon absorption (r-TPA) cross section of ICG at 800 nm is measured for the first time to be 20(±13) GM, where 1 GM equals 10−50 cm4 s, suggesting that having a resonant intermediate state does not significantly enhance two-photon processes in ICG. The spectrotemporally resolved emission signatures of ICG excited by entangled photons are also presented to support this conclusion.

Funder

U.S. Department of Energy

Publisher

AIP Publishing

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1. Impact of Classical and Quantum Light on Donor–Acceptor–Donor Molecules;The Journal of Physical Chemistry Letters;2024-09-10

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