论文标题

具有可见光子的量子启发的Terahertz光谱

Quantum-inspired terahertz spectroscopy with visible photons

论文作者

Kutas, Mirco, Haase, Björn, Klier, Jens, Molter, Daniel, von Freymann, Georg

论文摘要

Terahertz光谱允许鉴定材料的不同异构体,用于药物歧视以及检测有害物质。由于用于包装的许多介电材料在Terahertz光谱范围内都是透明的,因此如果包装,甚至可以识别物质。尽管有这些有用的应用,但Terahertz光谱却遭受了技术要求仍然需要检测到Terahertz辐射。因此,使用超快速脉冲激光器的相干时间域镜检查方案,或与需要两个激光系统的光质检测的连续波检测,用于挑战挑战,以检测无需使用冷却检测器而无需使用冷却的检测器即可检测出如此低源的辐射。在这里,我们报告了Terahertz光谱的首次演示,其中样品与Terahertz Idler光子相互作用,而仅检测到相关的可见信号光子 - 这是受量子光学启发的概念。为了生成这些相关的信号式光子光对,使用了定期粘液的氯酸酯晶体和660 nm连续的波泵源。通过单晶非线性干涉仪传播后,泵光子通过高效且窄带体积bragg光栅从信号辐射中分离出来。一个未冷却的科学CMOS摄像机检测到剩余的可见信号的频率 - 角光谱,并揭示了Stokes中的Terahertz-Spectral信息以及胶线向前生成的反stokes部分。冷却探测器和昂贵的脉冲激光器都不需要进行连贯检测。我们通过仅检测仅检测可见的光子来证明$α$ - 乳糖一水合物和para-氨基苯甲酸的Terahertz光谱范围的众所周知的吸收特征的光谱。

Terahertz spectroscopy allows for identifying different isomers of materials, for drug discrimination as well as for detecting hazardous substances. As many dielectric materials used for packaging are transparent in the terahertz spectral range, substances might even be identified if packaged. Despite these useful applications, terahertz spectroscopy suffers from the still technically demanding detection of terahertz radiation. Thus, either coherent time-domain-spectroscopy schemes employing ultrafast pulsed lasers or continuous-wave detection with photomixers requiring two laser systems are used to circumvent the challenge to detect such low-energetic radiation without using cooled detectors. Here, we report on the first demonstration of terahertz spectroscopy, in which the sample interacts with terahertz idler photons, while only correlated visible signal photons are detected - a concept inspired by quantum optics. To generate these correlated signal-idler photon pairs, a periodically poled lithium niobate crystal and a 660 nm continuous-wave pump source are used. After propagating through a single-crystal nonlinear interferometer, the pump photons are separated from the signal radiation by highly efficient and narrowband volume Bragg gratings. An uncooled scientific CMOS camera detects the frequency-angular spectra of the remaining visible signal and reveals terahertz-spectral information in the Stokes as well as the anti-Stokes part of collinear forward generation. Neither cooled detectors nor expensive pulsed lasers for coherent detection are required. We demonstrate spectroscopy on the well-known absorption features in the terahertz spectral range of $α$-lactose monohydrate and para-aminobenzoic acid by detecting only visible photons.

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