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Stability of a Quasi-Optical Superconducting NbTiN Hot-Electron Bolometer Mixer at 1.5 THz Frequency Band

机译:准光学超导NbTiN热电子鼓泡仪混频器在1.5 THz频段的稳定性

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摘要

We are developing quasi-optical superconducting hot-electron bolometer (HEB) mixer receivers for astronomical and atmospheric remote sensing applications. The microbridge of the HEB mixer was fabricated at room temperature from a 6.8-nm-thick niobium titanium nitride (NbTiN) film deposited on a 20-nm-thick aluminum nitride (AlN) buffer layer, using a helicon sputtering technique at a slow deposition rate. The mixer was cooled to 4.2 K using a closed-cycled mechanical 4 K pulse-tube cryocooler with a temperature fluctuation of $pm$1.6 mK. The stability of a large-volume NbTiN HEB mixer was studied at 1.47 THz by changing local oscillator (LO) power with the mixer bias voltage fixed. The intermediate frequency (IF) signal measured at 1.5 GHz had a maximum peak at a certain mixer bias current. The receiver noise temperature was lowest at around the IF maximum peak. It was also found that the IF signal was most stable at around the IF maximum peak under conditions in which the instability of LO pumping level, induced by small mechanical vibrations of the cryostat, remained in the optical system.
机译:我们正在开发用于天文和大气遥感应用的准光学超导热电子辐射热计(HEB)混合接收器。 HEB混合器的微桥是在室温下使用慢速沉积的螺旋溅射技术,通过在20 nm厚的氮化铝(AlN)缓冲层上沉积的6.8 nm厚的氮化钛铌(NbTiN)膜制成的率。使用闭环机械4 K脉冲管低温冷却器将混合器冷却至4.2 K,温度波动为$ pm $ 1.6 mK。通过在固定混频器偏置电压的情况下改变本地振荡器(LO)功率,研究了大容量NbTiN HEB混频器在1.47 THz时的稳定性。在一定的混频器偏置电流下,在1.5 GHz处测得的中频(IF)信号具有最大峰值。接收器噪声温度最低,约为中频最大峰值。还发现,在低温系统中,由于低温恒温器的微小机械振动而引起的本振泵浦电平的不稳定性仍然存在的条件下,中频信号在中频最大峰值附近最为稳定。

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