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March 8, 2026The Journal of Physical Chemistry Letters0 citations

Theory for Entangled-Photons Stimulated Raman Scattering versus Nonlinear Absorption for Polyatomic Molecules

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MZM. M. ZhangJFJiahao FanFSFrank Schlawin

Key Points

  • This research aims to evaluate the enhancement of stimulated Raman scattering using entangled photons.
  • Evaluated the effect of entangled photons on stimulated Raman scattering.
  • Demonstrated time-energy correlation of photon pairs for optimizing SRS signals for polyatomic molecules.
  • Assessed the spectral-line intensity of entangled-photon SRS against entangled two-photon absorption.
  • Entangled-photon SRS shows similar spectral-line intensity order as entangled two-photon absorption.
  • Identified parameter windows for enhancing ESRS signals.
  • Vibrational coherence significantly enhances the effectiveness of ESRS compared to ETPA.

Abstract

Quantum entanglement offers an incredible resource for quantum-enhanced sensing, imaging, and spectroscopy. Here we evaluate the enhancement of stimulated Raman scattering (SRS) signal by entangled photons. We demonstrate that the time-energy correlation of the photon pairs can optimize the signal for polyatomic molecules. Our results show that the spectral-line intensity of the entangled-photon SRS (ESRS) is of the same order of magnitude as the one for the entangled two-photon absorption (ETPA); the parameter window is thus identified to do so. Moreover, the vibrational coherence is found to play an important role for enhancing the ESRS against the ETPA intensity. Our work paves a firm road for extending the schemes of molecular spectroscopy with quantum light, based on the observation of the ETPA in experiments.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69acc57d32b0ef16a404fb1dhttps://doi.org/10.1021/acs.jpclett.5c03719
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