光学
光子
量子成像
物理
光子纠缠
自发参量下转换
量子光学
波长
量子
光电子学
量子信息
量子纠缠
量子网络
量子力学
作者
Robin Camphausen,Adrià Sansa Perna,Álvaro Cuevas,Alexander Demuth,Javier Arrés Chillón,Markus Gräfe,Fabian Steinlechner,Valerio Pruneri
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2023-01-23
卷期号:31 (4): 6039-6039
被引量:15
摘要
Quantum resources can provide supersensitive performance in optical imaging. Detecting entangled photon pairs from spontaneous parametric down conversion (SPDC) with single-photon avalanche diode (SPAD) image sensor arrays (ISAs) enables practical wide-field quantum-enhanced imaging. However, matching the SPDC wavelength to the peak detection efficiency range of complementary metal–oxide–semiconductor (CMOS) compatible mass-producible SPAD-ISAs has remained technologically elusive, resulting in low imaging speeds to date. Here, we show that a recently developed visible-wavelength entangled photon source enables high-speed quantum imaging. By operating at high detection efficiency of a SPAD-ISA, we increase acquisition speed by more than an order of magnitude compared to previous similar quantum imaging demonstrations. Besides being fast, the quantum-enhanced phase imager operating at short wavelengths retrieves nanometer scale height differences, tested by imaging evaporated silica and protein microarray spots on glass samples, with sensitivity improved by a factor of 1.351 ± 0.004 over equivalent ideal classical imaging. This work represents an important stepping stone towards scalable real-world quantum imaging advantage, and may find use in biomedical and industrial applications as well as fundamental research.
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