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Micro spectrometer for parallel light and method of use

机译:平行光微光谱仪及其使用方法

摘要

A spectrometer system includes an optical assembly for collimating light, a micro-ring grating assembly having a plurality of coaxially-aligned ring gratings, an aperture device defining an aperture circumscribing a target focal point, and a photon detector. An electro-optical layer of the grating assembly may be electrically connected to an energy supply to change the refractive index of the electro-optical layer. Alternately, the gratings may be electrically connected to the energy supply and energized, e.g., with alternating voltages, to change the refractive index. A data recorder may record the predetermined spectral characteristic. A method of detecting a spectral characteristic of a predetermined wavelength of source light includes generating collimated light using an optical assembly, directing the collimated light onto the micro-ring grating assembly, and selectively energizing the micro-ring grating assembly to diffract the predetermined wavelength onto the target focal point, and detecting the spectral characteristic using a photon detector.
机译:光谱仪系统包括用于准直光的光学组件,具有多个同轴对准的环形光栅的微环光栅组件,限定围绕目标焦点的孔径的孔径设备以及光子检测器。光栅组件的电光层可以电连接到能量源以改变电光层的折射率。替代地,光栅可以电连接到能量供应并且例如以交流电压被通电以改变折射率。数据记录器可以记录预定的光谱特性。一种检测源光的预定波长的光谱特性的方法,包括:使用光学组件产生准直光;将准直光引导到微环光栅组件上;以及选择性地激励微环光栅组件以将预定波长衍射到目标焦点,并使用光子检测器检测光谱特征。

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