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Ultrabroadband coherence-domain imaging using parametric downconversion and superconducting single-photon detectors at 1064 nm

机译:使用参数下变频和1064 nm超导单光子探测器进行超宽带相干域成像

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摘要

Coherence-domain imaging systems can be operated in a single-photon-counting mode, offering low detector noise; this in turn leads to increased sensitivity for weak light sources and weakly reflecting samples. We have demonstrated that excellent axial resolution can be obtained in a photon-counting coherence-domain imaging (CDI) system that uses light generated via spontaneous parametric down-conversion (SPDC) in a chirped periodically poled stoichiometric lithium tantalate (chirped-PPSLT) structure, in conjunction with a niobium nitride superconducting single-photon detector (SSPD). The bandwidth of the light generated via SPDC, as well as the bandwidth over which the SSPD is sensitive, can extend over a wavelength region that stretches from 700 to 1500 nm. This ultrabroad wavelength band offers a near-ideal combination of deep penetration and ultrahigh axial resolution for the imaging of biological tissue. The generation of SPDC light of adjustable bandwidth in the vicinity of 1064 nm, via the use of chirped-PPSLT structures, had not been previously achieved. To demonstrate the usefulness of this technique, we construct images for a hierarchy of samples of increasing complexity: a mirror, a nitrocellulose membrane, and a biological sample comprising onion-skin cells.
机译:相干域成像系统可以在单光子计数模式下运行,检测器噪声低;反过来,这导致对弱光源和弱反射样本的灵敏度提高。我们已经证明,在光子计数相干域成像(CDI)系统中可以获得良好的轴向分辨率,该系统使用via发出的周期性极化极化化学计量的钽酸锂(chirped-PPSLT)结构中通过自发参数下转换(SPDC)产生的光,结合氮化铌超导单光子探测器(SSPD)。通过SPDC产生的光的带宽以及SSPD敏感的带宽可以在700到1500 nm的波长范围内扩展。该超宽波段为生物组织成像提供了深度穿透和超高轴向分辨率的近乎理想的组合。以前还没有通过使用chi PPSLT结构来生成带宽在1064 nm附近的SPDC光。为了证明该技术的实用性,我们为越来越复杂的样本层次结构构建了图像:镜子,硝酸纤维素膜和包含洋葱皮细胞的生物样本。

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