TR2026-037
Quantum-enhanced sensing of time-varying signals at the nanometer scale
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- , "Quantum-enhanced sensing of time-varying signals at the nanometer scale", SPIE Photonics West, Shahriar, S. M., Eds., DOI: 10.1117/12.3079847, March 2026, vol. 13920, pp. 139200I.BibTeX TR2026-037 PDF
- @inproceedings{Lualdi2026mar,
- author = {Lualdi, Colin and Rapp, Joshua and Kwiat, Paul},
- title = {{Quantum-enhanced sensing of time-varying signals at the nanometer scale}},
- booktitle = {Proc. SPIE Quantum Sensing, Imaging, and Precision Metrology IV},
- year = 2026,
- editor = {Shahriar, S. M.},
- volume = 13920,
- pages = {139200I},
- month = mar,
- publisher = {SPIE},
- doi = {10.1117/12.3079847},
- url = {https://www.merl.com/publications/TR2026-037}
- }
- , "Quantum-enhanced sensing of time-varying signals at the nanometer scale", SPIE Photonics West, Shahriar, S. M., Eds., DOI: 10.1117/12.3079847, March 2026, vol. 13920, pp. 139200I.
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Abstract:
The resilience of quantum two-photon interference against optical loss and background sets it apart from classical single-photon interference for the purpose of sensing. However, achieving fast measurements at the nanometer scale with two-photon interference is challenging, as attaining high resolution typically requires either ultra- broadband photons or many probe photons. To realize nanometer-scale measurements in a matter of seconds or less, we greatly increase the per-photon information content via highly non-degenerate energy entanglement. Our fast measurements thereby enable us to probe time-varying signals at the nanometer scale. To further develop our capabilities, we have drawn on single-photon imaging techniques to implement a robust protocol for reconstructing periodic signals from our relatively sparse detection data, complete with amplitude and frequency information. With this analysis regimen, we have successfully extracted complex multi-frequency signals as well as kHz-range acoustic vibrations. We review our method and present the results of an example measurement to illustrate our capabilities.
