Interferometric quantum spectroscopy with undetected photons via distinguishability modulation

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초록

Quantum spectroscopy with undetected photons (QSUP) utilizing the quantum entanglement of parametrically down-converted photons has emerged as a new spectroscopic platform. Here, we demonstrate a high-resolution and remote-measurement QSUP, where light-matter interactions and photon detections are performed in spectrally and spatially different regions. A dual-stimulated parametric down-conversion scheme with an optical frequency-comb pump and ultra-narrow coherent seed beam in an idler mode is used to generate path-entangled pairs of the undetected idler and measured frequency-comb signal photons. To demonstrate the frequency resolution of this scheme, a Fabry-Perot cavity with a narrow bandwidth is used as a sample that modulates the distinguishability of one-photon added coherent idler beams, which directly affects the interference fringe visibility of the entangled signal photons. We thus anticipate that the remote QSUP whose frequency resolution is determined by the linewidth of the coherent seed laser will enable the development of quantum spectroscopy featuring high resolution. (C) 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement

키워드

INDUCED COHERENCEDOWN-CONVERSION
제목
Interferometric quantum spectroscopy with undetected photons via distinguishability modulation
저자
Lee, Sun KyungYono, Tai HyunCho, Minhaeng
DOI
10.1364/OE.27.014853
발행일
2019-05-13
유형
Article
저널명
Optics Express
27
10
페이지
14853 ~ 14870