Shorted two-dimensional high-Tc Josephson arrays for oscillator applications

S. Beuven, O. Harnack, M. Darula
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Abstract

We present results of our experimental investigations of the dynamic properties of two types of shorted two-dimensional (2D) arrays. The first type consisted of 4×4 YBCO step edge junctions integrated into a circuit, which allowed the simultaneous detection of all single row voltages. Thus, using only dc-measurements, the interaction and synchronization between the rows could be observed. In the second investigated array type the edge junctions of the rows were closed into superconducting loops in the form of coplanar resonators. Resonant steps were observed on the current–voltage characteristic due to interaction of the junctions with the resonators. The circuits were integrated into a stripline geometry and coupled to another (detector) Josephson junction. A clear detector response, i.e. Shapiro steps, was measured up to 460 GHz. Steps up to 4th harmonic were observed in the frequency range 150–200 GHz.

用于振荡器应用的短路二维高tc约瑟夫森阵列
我们提出了我们的实验研究的结果,两种类型的短二维(2D)阵列的动态特性。第一种类型包括4×4 YBCO阶跃边缘结集成到电路中,允许同时检测所有单行电压。因此,仅使用直流测量,就可以观察到行之间的交互和同步。在第二种研究的阵列类型中,排的边缘结以共面谐振器的形式封闭成超导环路。由于结与谐振器的相互作用,在电流-电压特性上观察到谐振阶跃。电路被集成到一个带状线几何和耦合到另一个(探测器)约瑟夫森结。一个清晰的探测器响应,即夏皮罗步长,测量到460 GHz。在150-200 GHz频率范围内观察到4次谐波的阶跃。
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