论文标题

开发新一代的综合微型特征远红外光谱仪,以进行低温大量强度映射的实验(Apaim)

Developing a New Generation of Integrated Micro-Spec Far Infrared Spectrometers for the EXperiment for Cryogenic Large-Aperture Intensity Mapping (EXCLAIM)

论文作者

Volpert, Carolyn G., Barrentine, Emily M., Mirzaei, Mona, Barlis, Alyssa, Bolatto, Alberto D., Bulcha, Berhanu, Cataldo, Giuseppe, Connors, Jake A., Costen, Nicholas, Ehsan, Negar, Essinger-Hileman, Thomas, Glenn, Jason, Hays-Wehle, James P., Hess, Larry A., Kogut, Alan J., Moseley, Harvey, Mugge-Durum, Jonas, Noroozian, Omid, Oxholm, Trevor M., Rahmani, Maryam, Stevenson, Thomas, Switzer, Eric R., Watson, Joseph, Wollack, Edward J.

论文摘要

远红外天文学的当前状态驱动了为将来的空间和地面仪器开发紧凑,敏感的光谱仪的必要性。在这里,我们介绍了目前正在开发的远红外气球任务中正在开发的$ \ rm $ $ $ $ $ $ $ $ $ $ $ \ rm \ rm \ rm \ rm-rm $ $ $ $ $ $ $ $ $的细节。光谱仪的设计旨在覆盖$ \ rm rm rm r \ = \λ/δλ= \ 512 $的分辨率为$ \ rm \ rm 638 \μ$ m band Center。光谱仪设计结合了在低损坏单晶Si芯片上实现的Rowland光栅光谱仪,采用NB微带平面传输线和薄膜Al动力学电感探测器(KIDS)。在成功的$ \ rm r = 64 \μ$ -spec原型上,Apriam $ \ rmμ$ -SPEC设计是一种进步,可以将其视为一个亚MM超导光子集成电路(PIC),结合了光谱分散和检测。该设计以单个$ m {=} 2 $光栅顺序运行,允许一个光谱仪覆盖完整的唤醒频段,而无需多阶焦点平面。诱人的仪器将驾驶六个光谱仪,这些光谱仪是在直径150毫米的Si晶片上制造的。制造涉及换束键合工艺,并在SI介电的两侧具有超导层的图案。这些光谱仪设计为以100 mk的速度操作,并将包括针对NEP $ {\ sim} 8 \ times10^{ - 19} $ $ $ \ rm w/\ sqrt {hz} $的355 al KID检测器。我们总结了这些$ \ rmμ$ -SPEC光谱仪的设计,制造和持续开发。

The current state of far-infrared astronomy drives the need to develop compact, sensitive spectrometers for future space and ground-based instruments. Here we present details of the $\rm μ$-Spec spectrometers currently in development for the far-infrared balloon mission EXCLAIM. The spectrometers are designed to cover the $\rm 555 - 714\ μ$m range with a resolution of $\rm R\ =\ λ/ Δλ =\ 512$ at the $\rm 638\ μ$m band center. The spectrometer design incorporates a Rowland grating spectrometer implemented in a parallel plate waveguide on a low-loss single-crystal Si chip, employing Nb microstrip planar transmission lines and thin-film Al kinetic inductance detectors (KIDs). The EXCLAIM $\rm μ$-Spec design is an advancement upon a successful $\rm R = 64\ μ$-Spec prototype, and can be considered a sub-mm superconducting photonic integrated circuit (PIC) that combines spectral dispersion and detection. The design operates in a single $M{=}2$ grating order, allowing one spectrometer to cover the full EXCLAIM band without requiring a multi-order focal plane. The EXCLAIM instrument will fly six spectrometers, which are fabricated on a single 150 mm diameter Si wafer. Fabrication involves a flip-wafer-bonding process with patterning of the superconducting layers on both sides of the Si dielectric. The spectrometers are designed to operate at 100 mK, and will include 355 Al KID detectors targeting a goal of NEP ${\sim}8\times10^{-19}$ $\rm W/\sqrt{Hz}$. We summarize the design, fabrication, and ongoing development of these $\rm μ$-Spec spectrometers for EXCLAIM.

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