NEW-MUSIC:新一代扩展波长多波段亚毫米电感照相机

Sunil R. Golwala, Andrew D. Beyer, Daniel Cunnane, Peter K. Day, Fabien Defrance, Clifford F. Frez, Xiaolan Huang, Junhan Kim, Jean-Marc Martin, Jack Sayers, Shibo Shu, Shiling Yu
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引用次数: 0

摘要

Leighton Chajnantor 望远镜(LCT)上的下一代扩展波长-MUltiband sub/millimeter InductanceCamera(NEW-MUSIC)将是首台六波段、跨毫米波("trans-mm")偏振仪,覆盖 2.4 个倍频程的光谱带宽,为跨毫米时域前沿,特别是能量、密度、时间和磁场方面的新前沿打开一扇新窗口。NEW-MUSIC 的宽光谱覆盖范围还将使人们能够利用 Sunyaev-Zeldovich 效应来研究星系和星系团的热气晕中的吸积、反馈和尘埃含量。带有偏振信息的六波段光谱能量分布将为了解恒星和行星的孕育过程提供新的视角。NEW-MUSIC 将采用分层相控阵列的偏振敏感超导槽-偶极子天线,再加上光刻带通滤波器,以接近最佳的方式在 LCT 的 14' 视场中填充 80-420 GHz 的六个频谱带(1:5.25 频谱动态范围;2.4 倍频程)。光线将被传输到铝或铝微带耦合、平行板电容器、叠加元件动感探测器(MS-PPC-LEKID),这是一种全新的 KID 架构,大大提高了设计灵活性,同时提供了本底限制性能。创新的宽带宽蚀刻硅结构将用于反照焦平面的抗反射处理。NEW-MUSIC 将以低成本高效益的方式重复使用 MUSIC 仪器的大部分部件,首先部署一个能够进行大部分 NEW-MUSIC 科学研究的四分之一尺度焦平面,随后部署一个 NEW-MUSIC 广域巡天科学所需的全 FoV 焦平面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NEW-MUSIC: The Next-generation Extended-Wavelength Multiband Sub/millimeter Inductance Camera
The Next-generation Extended Wavelength-MUltiband Sub/millimeter Inductance Camera (NEW-MUSIC) on the Leighton Chajnantor Telescope (LCT) will be a first-of-its-kind, six-band, transmillimeter-wave ("trans-mm") polarimeter covering 2.4 octaves of spectral bandwidth to open a new window on the trans-mm time-domain frontier, in particular new frontiers in energy, density, time, and magnetic field. NEW-MUSIC's broad spectral coverage will also enable the use of the Sunyaev-Zeldovich effects to study accretion, feedback, and dust content in the hot gaseous haloes of galaxies and galaxy clusters. Six-band spectral energy distributions, with polarization information, will yield new insights into stellar and planetary nurseries. NEW-MUSIC will employ hierarchical, phased arrays of polarization-sensitive superconducting slot-dipole antennas, coupled to photolithographic bandpass filters, to nearly optimally populate LCT's 14' field-of-view with six spectral bands over 80-420 GHz (1:5.25 spectral dynamic range; 2.4 octaves). Light will be routed to Al or AlMn microstripline-coupled, parallel-plate capacitor, lumped-element kinetic inductance detectors (MS-PPC-LEKIDs), an entirely new KID architecture that substantially enhances design flexibility while providing background-limited performance. Innovative, wide-bandwidth, etched silicon structures will be used to antireflection-treat the back-illuminated focal plane. NEW-MUSIC will cost-effectively reuse much of the MUSIC instrument, initially deploying a quarter-scale focal plane capable of the bulk of NEW-MUSIC science followed later by a full-FoV focal plane needed for NEW-MUSIC wide-area survey science.
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