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Mid-infrared materials and devices on a Si platform for optical sensing

机译:Si平台上用于光学传感的中红外材料和设备

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In this article, we review our recent work on mid-infrared (mid-IR) photonic materials and devices fabricated on silicon for on-chip sensing applications. Pedestal waveguides based on silicon are demonstrated as broadband mid-IR sensors. Our low-loss mid-IR directional couplers demonstrated in SiNx waveguides are useful in differential sensing applications. Photonic crystal cavities and microdisk resonators based on chalcogenide glasses for high sensitivity are also demonstrated as effective mid-IR sensors. Polymer-based functionalization layers, to enhance the sensitivity and selectivity of our sensor devices, are also presented. We discuss the design of mid-IR chalcogenide waveguides integrated with polycrystalline PbTe detectors on a monolithic silicon platform for optical sensing, wherein the use of a low-index spacer layer enables the evanescent coupling of mid-IR light from the waveguides to the detector. Finally, we show the successful fabrication processing of our first prototype mid-IR waveguide-integrated detectors.
机译:在本文中,我们回顾了我们最近在中红外(mid-IR)光子材料和在硅上制造的,用于片上传感应用的器件的工作。基于硅的基座波导被证明是宽带中红外传感器。我们在SiN x 波导中演示的低损耗中红外定向耦合器可用于差分传感应用。基于硫属化物玻璃的高灵敏度光子晶体腔和微盘谐振器也被证明是有效的中红外传感器。还介绍了基于聚合物的功能化层,以增强我们传感器设备的灵敏度和选择性。我们讨论了在单片硅平台上集成多晶PbTe检测器的中红外硫族化物波导的设计,以进行光学传感,其中使用低折射率间隔层可以使中红外光从波导到检测器的the逝耦合。最后,我们展示了我们第一个原型中红外波导集成探测器的成功制造过程。

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