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Silicon-chip-based mid-infrared dual-comb spectroscopy

机译:基于硅芯片的中红外双梳光谱

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摘要

The development of a spectroscopy device on a chip that could realize real-time fingerprinting with label-free and high-throughput detection of trace molecules represents one of the big challenges in sensing. Dual-comb spectroscopy (DCS) in the mid-infrared is a powerful technique offering high acquisition rates and signal-to-noise ratios through use of only a single detector with no moving parts. Here, we present a nanophotonic silicon-on-insulator platform designed for mid-infrared (mid-IR) DCS. A single continuous-wave low-power pump source generates two mutually coherent mode-locked frequency combs spanning from 2.6 to 4.1 μm in two silicon microresonators. A proof-of-principle experiment of vibrational absorption DCS in the liquid phase is achieved acquiring spectra of acetone spanning from 2900 to 3100 nm at 127-GHz (4.2-cm−1) resolution. These results represent a significant step towards a broadband, mid-IR spectroscopy instrument on a chip for liquid/condensed matter phase studies.
机译:芯片上光谱设备的开发可以通过无标记和痕量分子的高通量检测实现实时指纹识别,这是传感领域的一大挑战。中红外双梳状光谱(DCS)是一项强大的技术,只需使用一个没有移动部件的检测器,即可提供高采集率和信噪比。在这里,我们提出了一种用于中红外(mid-IR)DCS的纳米光子绝缘体上硅平台。单个连续波低功率泵浦源在两个硅微谐振器中产生两个相互相干的锁模频率梳,范围从2.6到4.1μm。通过在127-GHz(4.2-cm -1 )分辨率下获取丙酮在2900至3100 nm范围内的光谱,进行了液相振动吸收DCS的原理验证实验。这些结果代表了朝着芯片上的宽带中红外光谱仪器迈出的重要一步,该仪器用于液相/冷凝物相研究。

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