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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >Point-contact-type Josephson harmonic mixer for frequency measurement of far-infrared lasers
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Point-contact-type Josephson harmonic mixer for frequency measurement of far-infrared lasers

机译:点接触式约瑟夫森谐波混频器,用于远红外激光的频率测量

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摘要

Point-contact-type Josephson junctions have been developed as a harmonic mixer to measure far-infrared (FIR) laser frequencies in a frequency chain up to the infrared region. The junctions were formed by mechanically pressing a niobium wire of 70 μm in diameter with a sharply etched tip against a niobium post of 2 mm in diameter. The voltage-current characteristics of the mixers were investigated under the irradiation of FIR lights from an optically pumped methyl-alcohol laser. The Shapiro steps for FIR lights up to 3.1 THz were observed. The mixing properties of the mixers were studied through harmonic mixing experiments of 50-GHz microwaves and the FIR lights up to the frequency of 3.1 THz. The conversion efficiency of the beat signals to the incident FIR power was found to vary as the — 4th power of the FIR frequency. From the mixing properties, the combination of the critical current Ic of the junction and the product IcRn where Rn is the normal resistance of the junction, was found important to optimize the mixing performance.
机译:点接触型约瑟夫逊结已经开发为谐波混频器,可测量直至红外区域的频率链中的远红外(FIR)激光频率。通过将直径为70μm的铌丝用尖锐蚀刻的尖端机械挤压到直径为2 mm的铌柱上,从而形成结。在来自光泵浦的甲基醇激光器的FIR光照射下研究了混合器的电压-电流特性。观察到高达3.1 THz的FIR灯的Shapiro步骤。通过50 GHz微波的谐波混合实验研究了混合器的混合特性,并且FIR灯的频率高达3.1 THz。发现拍频信号到入射FIR功率的转换效率随FIR频率的四次方变化。从混合特性来看,结的临界电流Ic和乘积IcRn(其中Rn是结的法向电阻)的组合对于优化混合性能非常重要。

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