论文标题
显微镜在中红外未检测到的光子
Microscopy with undetected photons in the mid-infrared
论文作者
论文摘要
由于其具有独特(Bio)化学特异性的能力,带有Mmid-Ir Inlumination的显微镜对广泛的生物医学和工业应用具有巨大的希望。然而,主要的局限性仍被检测到。由于当前的中期检测技术经常将劣质技术能力与成本较高的成本结合在一起。这导致了将检测传播的方法转移到可见的智慧方面的方法,在那里可以提供极高的基于硅的摄影技术。在这里,我们通过实验表明,非线性干涉测量法可以为MID-IR显微镜提供强大的工具,而仅需使用标准的CMOS摄像头才需要近红外检测。在此原理实施中,我们证明了覆盖3.4-4.3UM的宽波长范围的强度成像,并证明了35UM的空间分辨率,用于包含650个已解析元件的图像。此外,我们证明我们的技术适合目的,从而获得了MID-IR中生物组织样品的微观图像。这些结果为生命科学中量子成像技术的潜在相关性提供了新的观点。
Owing to its capacity for unique (bio)-chemical specificity, microscopy withmid-IR illumination holds tremendous promise for a wide range of biomedical and industrial applications. The primary limitation, however, remains detection; with current mid-IR detection technology often marrying inferior technical capabilities with prohibitive costs. This has lead to approaches that shift detection towavelengths into the visible regime, where vastly superior silicon-based cameratechnology is available. Here, we experimentally show how nonlinear interferometry with entangled light can provide a powerful tool for mid-IR microscopy, while only requiring near-infrared detection with a standard CMOS camera. In this proof-of-principle implementation, we demonstrate intensity imaging overa broad wavelength range covering 3.4-4.3um and demonstrate a spatial resolution of 35um for images containing 650 resolved elements. Moreover, we demonstrate our technique is fit for purpose, acquiring microscopic images of biological tissue samples in the mid-IR. These results open a new perspective for potential relevance of quantum imaging techniques in the life sciences.