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Broadband MMIC LNAs for ALMA Band 2+3 With Noise Temperature Below 28 K

机译:噪声温度低于28 K的ALMA Band 2 + 3的宽带MMIC LNA

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摘要

Recent advancements in transistor technology, such as the 35 nm InP HEMT, allow for the development of monolithic microwave integrated circuit (MMIC) low noise amplifiers (LNAs) with performance properties that challenge the hegemony of SIS mixers as leading radio astronomy detectors at frequencies as high as 116 GHz. In particular, for the Atacama Large Millimeter and Submillimeter Array (ALMA), this technical advancement allows the combination of two previously defined bands, 2 (67-90 GHz) and 3 (84-116 GHz), into a single ultra-broadband 2+3 (67-116 GHz) receiver. With this purpose, we present the design, implementation, and characterization of LNAs suitable for operation in this new ALMA band 2+3, and also a different set of LNAs for ALMA band 2. The best LNAs reported here show a noise temperature less than 250 K from 72 to 104 GHz at room temperature, and less than 28 K from 70 to 110 GHz at cryogenic ambient temperature of 20 K. To the best knowledge of the authors, this is the lowest wideband noise ever published in the 70-110 GHz frequency range, typically designated as W-band.
机译:晶体管技术的最新进展(例如35 nm InP HEMT)允许开发具有性能特性的单片微波集成电路(MMIC)低噪声放大器(LNA),从而挑战SIS混频器的霸权地位,使其成为领先的射电天文探测器,频率为高达116 GHz。特别是对于阿塔卡马大毫米波和亚毫米波阵列(ALMA),这项技术进步允许将两个先前定义的频段2(67-90 GHz)和3(84-116 GHz)组合到一个超宽带2中。 +3(67-116 GHz)接收器。为此,我们介绍了适合在此新ALMA频段2 + 3中运行的LNA的设计,实现和特性,以及适用于ALMA频段2的另一组LNA。此处报告的最佳LNA的噪声温度低于在室温下从250到72 GHz到250 GHz,在低温20 K下从70到110 GHz不到28K。据作者所知,这是70-110出版以来最低的宽带噪声GHz频率范围,通常指定为W波段。

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