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High-Performance Integrated Photonic Spectrometers based on Arrayed Waveguide Gratings in Silica

机译:基于二氧化硅中的阵列波导光栅的高性能集成光子光谱仪

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Compact yet highly functional optical components are desired in modern astronomical instruments targeted at low system cost and reduced maintenance complexity. Integrated photonic spectrometers based on planar lightwave circuits are attractive as the planar miniature device can provide high spectral resolution but also great robustness and flexibility in the design of spectrograph systems. Arrayed waveguide gratings (AWGs) have the potential to be adapted and optimized to function as compact spectrometers in astronomical spectrographs. In this work high-resolution AWGs based on low-loss silica waveguides have been designed, fabricated and characterized. The measured spectral resolution exceeds 10~4 with Δλ = 150 pm at 1548 nm. The insertion loss (including two times fiber-chip coupling) is merely 2.07 dB, amounting to a peak throughput of 62%. Adiabatic fiber taper is developed to bring down the mode field diameter of a standard single mode fiber to match the mode size of the designed waveguide, resulting in almost lossless coupling from the fiber to the waveguide. The free-spectrum range is 48 nm and the side-band suppression is 22 dB. The AWG is also polarization-insensitive. Rotating the linearly polarized input light by 180° results in a slight shift of the central wavelength ~ 30 pm. The excellent overall performance makes this AWG an ideal candidate as the key building block for the development of an integrated astronomical spectrograph module.
机译:在现代天文仪器中需要紧凑但功能强大的光学组件,其目标是降低系统成本并降低维护复杂性。基于平面光波电路的集成光子光谱仪具有吸引力,因为平面微型设备不仅可以提供高光谱分辨率,而且在光谱仪系统的设计中具有出色的鲁棒性和灵活性。阵列波导光栅(AWG)具有适应和优化潜力,可在天文光谱仪中用作紧凑型光谱仪。在这项工作中,已经设计,制造和表征了基于低损耗二氧化硅波导的高分辨率AWG。在1548 nm处,Δλ= 150 pm时,测得的光谱分辨率超过10〜4。插入损耗(包括两倍的光纤-芯片耦合损耗)仅为2.07 dB,相当于62%的峰值吞吐量。绝热纤维锥度的开发是为了减小标准单模光纤的模场直径,使其与设计波导的模大小匹配,从而使从光纤到波导的耦合几乎无损。自由光谱范围为48 nm,边带抑制为22 dB。 AWG也是偏振不敏感的。将线偏振输入光旋转180°会导致中心波长略微偏移〜30 pm。出色的整体性能使该AWG成为集成天文光谱仪模块开发的关键构建块的理想选择。

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