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Wideband 67?116 GHz receiver development for ALMA Band 2

机译:宽带67?116 GHz接收器开发Alma Band 2

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Context. The Atacama Large Millimeter/submillimeter Array (ALMA) has been in operation since 2011, but it has not yet been populated with the full suite of its planned frequency bands. In particular, ALMA Band 2 (67?90 GHz) is the final band in the original ALMA band definition to be approved for production. Aims. We aim to produce a wideband, tuneable, sideband-separating receiver with 28 GHz of instantaneous bandwidth per polarisation operating in the sky frequency range of 67?116 GHz. Our design anticipates new ALMA requirements following the recommendations of the 2030 ALMA Development Roadmap. Methods. The cryogenic cartridge is designed to be compatible with the ALMA Band 2 cartridge slot, where the coldest components – the feedhorns, orthomode transducers, and cryogenic low noise amplifiers – operate at a temperature of 15 K. We use multiple simulation methods and tools to optimise our designs for both the passive optics and the active components. The cryogenic cartridge is interfaced with a room-temperature (warm) cartridge hosting the local oscillator and the downconverter module. This warm cartridge is largely based on GaAs semiconductor technology and is optimised to match the cryogenic receiver bandwidth with the required instantaneous local oscillator frequency tuning range. Results. Our collaboration has resulted in the design, fabrication, and testing of multiple technical solutions for each of the receiver components, producing a state-of-the-art receiver covering the full ALMA Band 2 and 3 atmospheric window. The receiver is suitable for deployment on ALMA in the coming years and it is capable of dual-polarisation, sideband-separating observations in intermediate frequency bands spanning 4?18 GHz for a total of 28 GHz on-sky bandwidth per polarisation channel. Conclusions. We conclude that the 67?116 GHz wideband implementation for ALMA Band 2 is now feasible and that this receiver provides a compelling instrumental upgrade for ALMA that will enhance observational capabilities and scientific reach.
机译:语境。 Atacama大型毫米/亚倍数钟阵列(ALMA)自2011年以来一直在运行,但尚未填充其计划频段的全套套件。特别地,Alma频段2(67?90 GHz)是原始ALMA带定义中的最终频段被批准用于生产。目标。我们的目的是生产宽带,可调,边带分离接收器,其瞬时带宽在67?116 GHz的天空范围内运行的每极其偏振。我们的设计预计2030年ALMA开发路线图的建议后的新ALMA要求。方法。低温盒设计成与ALMA带2盒槽兼容,其中最冷的部件 - 进料椅,矫形器换能器和低温低噪声放大器 - 在15 K的温度下操作。我们使用多种仿真方法和工具来优化我们的设计为无源光学和活动组件。低温盒与托管本地振荡器和下变频器模块的室温(温暖)盒式滤芯接口。这种暖墨盒主要基于GaAs半导体技术,并经过优化以将低温接收器带宽与所需的瞬时本地振荡器频率调谐范围匹配。结果。我们的协作导致了对每个接收器部件的多种技术解决方案的设计,制造和测试,产生覆盖完整的Alma带2和3大气窗口的最先进的接收器。接收器适用于未来几年在ALMA上部署,并且它能够在跨越4Ω·18GHz的中频带中的中间频带中的双极化,边带分离观察,总共28GHz的每偏振通道的天空带宽。结论。我们得出结论,67?116 GHz Alma Band 2的GHz宽带实现现在是可行的,并且该接收器为ALMA提供了令人信服的工具升级,这将增强观察能力和科学覆盖。

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