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Trapped Ion Quantum Computing
Quantum Chemistry
Frequency upconversion of infrared signals via molecular cavity optomechanical systems with gain
arXiv
Authors: Shu-Xian Quan, Fen Zou, Yong Li
Year
2026
Paper ID
69456
Status
Preprint
Abstract Read
~2 min
Abstract Words
116
Citations
N/A
Abstract
Molecular cavity optomechanical systems have recently emerged as a promising platform for enhancing infrared detection sensitivity, owing to their ability to up-convert low-frequency infrared (IR) photons to visible frequency range. Generally, under red-detuned pumping in such systems, the ideal conversion efficiency of the IR signal approaches 1. To overcome this efficiency constraint, we propose a scheme that incorporates gain into the infrared cavity of a molecular cavity optomechanical system comprising two cavities and an ensemble of N molecules. The upconversion process, which relies on IR absorption and Raman scattering associated with specific vibrational modes, is significantly amplified by the incorporation of gain under the red-detuned conditions. Moreover, our analysis demonstrates that the added noise is maintained near 0.5.
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- This paper contributes to the Quantum Chemistry research area in the Quantum Articles archive.
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- Molecular cavity optomechanical systems have recently emerged as a promising platform for enhancing infrared detection sensitivity, owing to their ability to up-convert...
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