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Infrared Spectroscopy with Visible Light

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arxiv 1506.07223 v1 pith:HGECXVM6 submitted 2015-06-24 quant-ph physics.optics

Infrared Spectroscopy with Visible Light

classification quant-ph physics.optics
keywords rangevisiblespectroscopyinfraredmeasurementsopticalspectraltechnique
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Spectral measurements in the infrared (IR) optical range provide unique fingerprints of materials which are useful for material analysis, environmental sensing, and health diagnostics. Current IR spectroscopy techniques require the use of optical equipment suited for operation in the IR range, which faces challenges of inferior performance and high cost. Here we develop a spectroscopy technique, which allows spectral measurements in the IR range using visible spectral range components. The technique is based on nonlinear interference of infrared and visible photons, produced via Spontaneous Parametric Down Conversion (SPDC). The intensity interference pattern for a visible photon depends on the phase of an IR photon, which travels through the media. This allows determining properties of the media in the IR range from the measurements of visible photons. The technique can substitute and/or complement conventional IR spectroscopy techniques, as it uses well-developed optical components for the visible range.

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    quant-ph 2026-07 conditional novelty 6.0

    Predictability defined via Bures distance is exactly complementary to Kirkwood–Dirac coherence for pure states and gives a min-entropy bound for classically-labelled sources.