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Multi-Dimensional Spectroscopy with Intense Entangled Beams: Entanglement-Enabled Phase Matching in a Collinear Beam Geometry

delete2025-11-01
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PRE
AI
D
Deependra Jadoun *
U
Upendra Harbola
V
Vladimir Chernyak
S
Shaul Mukamel *
DOI:10.1021/acs.jpclett.5c02496delete
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Abstract

Abstract

En 中文
The experimental realization of quantum molecular spectroscopy with entangled photons remains challenging owing to the low signal-to-noise ratio resulting from the use of low-flux entangled photons. High-flux entangled photons via intense entangled beams can be used to improve the signal-to-noise ratio, but the presence of unentangled photons contaminates the quantum signal stemming from entangled photons. Here, we demonstrate how intense entangled beams can be used in multi-dimensional spectroscopy while retaining the advantage of photon entanglement. Our approach is broadly applicable to odd-ordered nonlinear spectroscopies, and it generates purely quantum spectroscopic signals. The proposed approach allows the recording of desired phase-matched signals even in a collinear beam geometry, which lifts the requirement of complicated beam geometry setups for phase matching in multi-dimensional spectroscopies.
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Journal of Physical Chemistry Letters cover
Journal of Physical Chemistry Letters
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University of California Irvine
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lund university
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indian institute of science (iisc) - bangalore
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University of California System cover
University of California System
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