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Micro-Spec: an ultracompact, high-sensitivity spectrometer for far-infrared and submillimeter astronomy

机译:Micro-Spec:超紧凑,高灵敏度的光谱仪,用于远红外和亚毫米级天文学

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摘要

High-performance, integrated spectrometers operating in the far-infrared and submillimeter ranges promise to be powerful tools for the exploration of the epochs of reionization and initial galaxy formation. These devices, using high-efficiency superconducting transmission lines, can achieve the performance of a meter-scale grating spectrometer in an instrument implemented on a 4 inch silicon wafer. Such a device, when combined with a cryogenic telescope in space, provides an enabling capability for studies of the early universe. Here, the optical design process for Micro-Spec (μ-Spec) is presented, with particular attention given to its two-dimensional diffractive region, where the light of different wavelengths is focused on the different detectors. The method is based on the stigmatization and minimization of the light path function in this bounded region, which results in an optimized geometrical configuration. A point design with an efficiency of ~90% has been developed for initial demonstration and can serve as the basis for future instruments. Design variations on this implementation are also discussed, which can lead to lower efficiencies due to diffractive losses in the multimode region.
机译:在远红外和亚毫米范围内运行的高性能集成光谱仪有望成为探索电离和初始星系形成时代的强大工具。这些使用高效超导传输线的设备可以在4英寸硅晶圆上实现的仪器中实现米级光栅光谱仪的性能。当与太空中的低温望远镜结合使用时,这种设备为早期宇宙的研究提供了强大的能力。在此,我们将介绍Micro-Spec(μ-Spec)的光学设计过程,并特别注意其二维衍射区域,在该区域中,不同波长的光会聚在不同的检测器上。该方法基于该边界区域中光路函数的污名化和最小化,从而获得了优化的几何构型。已经开发出一种效率约为90%的点设计,可用于初步演示,并可作为将来仪器的基础。还讨论了这种实现方式的设计变化,由于多模区域中的衍射损耗,这可能导致效率降低。

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