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Low-noise 1 THz niobium superconducting tunnel junction mixer with a normal metal tuning circuit

机译:具有常规金属调谐电路的低噪声1 THz铌超导隧道结混合器

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摘要

We describe a 1 THz quasioptical SIS mixer which uses a twin-slot antenna, an antireflection-coated silicon hyperhemispherical lens, Nb/Al-oxide/Nb tunnel junctions, and an aluminum normal-metal tuning circuit in a two-junction configuration. Since the mixer operates substantially above the gap frequency of niobium (nu >~ 2 Delta/h ~ 700 GHz), a normal metal is used in the tuning circuit in place of niobium to reduce the Ohmic loss. The frequency response of the device was measured using a Fourier transform spectrometer and agrees reasonably well with the theoretical prediction. At 1042 GHz, the uncorrected double-sideband receiver noise temperature is 840 K when the physical temperature of the mixer is 2.5 K. This is the first SIS mixer which outperforms GaAs Schottky diode mixers by a large margin at 1 THz.
机译:我们描述了一个1 THz准光学SIS混频器,该混频器使用双槽天线,防反射涂层的硅超半球形透镜,Nb / Al-氧化物/ Nb隧道结以及两结配置的铝法向金属调谐电路。由于混频器的工作频率基本上高于铌的间隙频率(nu>〜2 Delta / h〜700 GHz),因此在调谐电路中使用普通金属代替铌以减少欧姆损耗。该设备的频率响应是使用傅立叶变换光谱仪测量的,与理论预测相当吻合。当混频器的物理温度为2.5 K时,在1042 GHz时,未经校正的双边带接收器噪声温度为840K。这是第一款SIS混频器,其频率在1 THz时大大超过GaAs肖特基二极管混频器。

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