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MINIATURIZED FOURIER-TRANSFORM RAMAN SPECTROMETER SYSTEMS AND METHODS

机译:小型化的傅立叶变换拉曼光谱仪系统和方法

摘要

State-of-the-art portable Raman spectrometers use discrete free-space optical components that must be aligned well and that don't tolerate vibrations well. Conversely, the inventive spectrometers are made with monolithic photonic integration to fabricate some or all optical components on one or more planar substrates. Photonic integration enables dense integration of components, eliminates manual alignment and individual component assembly, and yields superior mechanical stability and resistance to shock or vibration. These features make inventive spectrometers especially suitable for use in high-performance portable or wearable sensors. They also yield significant performance advantages, including a large (e.g., 10,000-fold) increase in Raman scattering efficiency resulting from on-chip interaction of the tightly localized optical mode and the analyte and a large enhancement in spectral resolution and sensitivity resulting from the integration of an on-chip Fourier-transform spectrometer.
机译:最先进的便携式拉曼光谱仪使用离散的自由空间光学组件,这些组件必须对准好并且不能很好地承受振动。相反,本发明的光谱仪由单片光子集成制成以在一个或多个平面基板上制造一些或所有光学组件。光子集成可实现组件的密集集成,消除了手动对准和单个组件的组装,并提供了卓越的机械稳定性以及抗冲击或振动性。这些特征使得本发明的光谱仪特别适用于高性能便携式或可穿戴式传感器。它们还具有显着的性能优势,包括由于紧密定位的光学模式与分析物在芯片上的相互作用而导致的拉曼散射效率大大提高(例如,提高了10,000倍),并且由于积分而大大提高了光谱分辨率和灵敏度片上傅里叶变换光谱仪的原理图。

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