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Terahertz high-sensitivity SIS mixer based on Nb–AlN–NbN hybrid superconducting tunnel junctions
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作者 刘博梁 刘冬 +8 位作者 姚明 金骏达 王争 李婧 史生才 Artem Chekushkin Michael Fominsky Lyudmila Filippenko Valery Koshelets 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第5期681-686,共6页
The terahertz band,a unique segment of the electromagnetic spectrum,is crucial for observing the cold,dark universe and plays a pivotal role in cutting-edge scientific research,including the study of cosmic environmen... The terahertz band,a unique segment of the electromagnetic spectrum,is crucial for observing the cold,dark universe and plays a pivotal role in cutting-edge scientific research,including the study of cosmic environments that support life and imaging black holes.High-sensitivity superconductor–insulator–superconductor(SIS)mixers are essential detectors for terahertz astronomical telescopes and interferometric arrays.Compared to the commonly used classical Nb/AlO_(x)/Nb superconducting tunnel junction,the Nb/AlN/NbN hybrid superconducting tunnel junction has a higher energy gap voltage and can achieve a higher critical current density.This makes it particularly promising for the development of ultra-wideband,high-sensitivity coherent detectors or mixers in various scientific research fields.In this paper,we present a superconducting SIS mixer based on Nb/AlN/NbN parallel-connected twin junctions(PCTJ),which has a bandwidth extending up to490 GHz–720 GHz.The best achieved double-sideband(DSB)noise temperature(sensitivity)is below three times the quantum noise level. 展开更多
关键词 SIS mixer TERAHERTZ gap voltage critical current density hybrid superconducting tunnel junction
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高灵敏度太赫兹探测模块氮化铌超导SIS混频器空间环境适应性研究 被引量:1
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作者 张坤 姚明 +4 位作者 刘冬 刘博梁 李婧 姚骑均 史生才 《红外与毫米波学报》 SCIE EI CAS CSCD 北大核心 2023年第2期188-192,共5页
高灵敏度太赫兹探测模块(High Sensitivity Terahertz Detection Module,HSTDM)是中国巡天望远镜的科学载荷之一。HSTDM是一台工作频段为410~510 GHz的高灵敏度高频率分辨率的外差混频接收机,其核心是工作在10 K温区的氮化铌(NbN)基超... 高灵敏度太赫兹探测模块(High Sensitivity Terahertz Detection Module,HSTDM)是中国巡天望远镜的科学载荷之一。HSTDM是一台工作频段为410~510 GHz的高灵敏度高频率分辨率的外差混频接收机,其核心是工作在10 K温区的氮化铌(NbN)基超导隧道结(Superconductor-Insulator–Superconductor,SIS)混频器。HSTDM将首次实现氮化铌(NbN)基超导SIS混频器的空间应用。NbN基超导SIS混频器应适应空间环境的特殊要求,如高可靠性,对振动、宇宙辐照和热变化的适应性。对NbN基超导SIS混频器进行的鉴定试验测试,包括正弦振动试验、随机振动试验、单粒子辐照试验、总剂量辐照试验和热循环试验。研究结果表明氮化铌(NbN)基超导SIS混频器能够满足HSTDM的空间应用需求。 展开更多
关键词 太赫兹 超导 超导隧道结(Superconductor-Insulator-Superconductor SIS)混频器 空间适应性
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