论文标题

具有泵增强自发参数下转换的高敏量量子传感

High-sensitivity quantum sensing with pump-enhanced spontaneous parametric down-conversion

论文作者

Lindner, Chiara, Kunz, Jachin, Herr, Simon J., Kiessling, Jens, Wolf, Sebastian, Kühnemann, Frank

论文摘要

近年来,基于自发参数下转换(SPDC)产生的相关光子对,利用非线性干涉仪的量子传感概念的发展。使用SPDC远非频率退化允许在中红外光子之间进行“分裂”,以实现最强的样品相互作用,而相关的近红外光子可用于低噪声检测。但是,SPDC提供的少量光子和由此产生的下值噪声比是一种限制因素,可防止新型感测概念的广泛适用性。在这里,我们演示了基于泵增强的SPDC的非线性干涉仪,其排放速率得到了强烈提高,但保持宽带,自发发射。为了验证该概念,我们通过近红外检测证明了高分辨率的中红外光谱法,从而展示了提高的精度。尽管中红外光子的数量大约比经典光谱仪小的五个数量级,但量子光谱仪的灵敏度变得可比性,这标志着朝着现实世界应用迈出的重要步骤。

Recent years have seen the development of quantum sensing concepts utilizing nonlinear interferometers based on correlated photon pairs generated by spontaneous parametric down-conversion (SPDC). Using SPDC far from frequency degeneracy allows a 'division of labor' between the mid-infrared photon for strongest sample interaction and the correlated near-infrared photon for low-noise detection. The small number of photons provided by SPDC and the resulting inferior signal-to-noise ratio are, however, a limiting factor preventing wide applicability of the novel sensing concept. Here, we demonstrate a nonlinear interferometer based on pump-enhanced SPDC with strongly improved emission rates, but maintaining broadband, spontaneous emission. For validation of the concept, we demonstrate high-resolution mid-infrared spectroscopy with near-infrared detection, showcasing the improved accuracy. Although the number of mid-infrared photons is about five orders of magnitude smaller than in classical spectrometers, the sensitivity of the quantum spectrometer becomes comparable, marking an essential step toward real-world applications.

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