NbN hot electron bolometric mixer with intrinsic receiver noise temperature of less than five times the quantum noise limit

E. Gerecht, C. F. Musante, Y. Zhuang, M. Ji, K. Yngvesson, T. Goyette, J. Waldman
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引用次数: 2

Abstract

In recent years, improvements in device development and quasi-optical coupling techniques utilizing planar antennas have led to a significant achievement in low noise receivers for the edges of the submillimeter frequency regime. Hot electron bolometric (HEB) receivers made of thin superconducting films such as NbN have produced a viable option for instruments designed to measure the molecular spectra for astronomical applications as well as in remote sensing of the atmosphere in the THz regime. This paper describes an NbN HEB mixer with intrinsic DSB receiver noise temperature of at most five times the quantum noise limit at frequencies as high as 2.24 THz.
本征接收噪声温度小于量子噪声极限5倍的NbN热电子测热混频器
近年来,利用平面天线的器件开发和准光学耦合技术的改进使得亚毫米频段边缘的低噪声接收机取得了重大成就。由超导体薄膜(如NbN)制成的热电子辐射热计(HEB)接收器为用于天文学应用的分子光谱测量以及太赫兹波段大气遥感的仪器提供了一个可行的选择。本文描述了一种NbN HEB混频器,在高达2.24太赫兹的频率下,其固有DSB接收器噪声温度最多是量子噪声极限的五倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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