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Interaction-free, single-pixel quantum imaging with undetected photons

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arxiv 2212.06531 v1 pith:4D3AUP2G submitted 2022-12-13 quant-ph

Interaction-free, single-pixel quantum imaging with undetected photons

classification quant-ph
keywords imagingobjectquantumsingle-pixeldetectionlightphotonsinduced
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A typical imaging scenario requires three basic ingredients: 1. a light source that emits light, which in turn interacts and scatters off the object of interest; 2. detection of the light being scattered from the object and 3. a detector with spatial resolution. These indispensable ingredients in typical imaging scenarios may limit their applicability in the imaging of biological or other sensitive specimens due to unavailable photon-starved detection capabilities and inevitable damage induced by interaction. Here, we propose and experimentally realize a quantum imaging protocol that alleviates all three requirements. By embedding a single-photon Michelson interferometer into a nonlinear interferometer based on induced coherence and harnessing single-pixel imaging technique, we demonstrate interaction-free, single-pixel quantum imaging of a structured object with undetected photons. Thereby, we push the capability of quantum imaging to the extreme point in which no interaction is required between object and photons and the detection requirement is greatly reduced. Our work paves the path for applications in characterizing delicate samples with single-pixel imaging at silicon-detectable wavelengths.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Interaction-free measurement of multiple objects using a universal integrated photonic processor

    quant-ph 2026-04 conditional novelty 7.0

    Experimental sequential interaction-free measurements of up to five objects with one photon on an integrated photonic processor confirm theoretical predictions after error mitigation.