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Phase-locked one- and two-dimensional Josephson-junction arrays asmillimeter and submillimeter wave generators

机译:锁相一维和二维约瑟夫逊结阵列的毫米波和亚毫米波发生器

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摘要

The results of numerical simulations of phase-locked 1D and 2D Josephson-junction arrays are reported. It is shown that the multi-junction structures with non-local junction interaction provide phase-locked oscillation state within wide critical current margins ΔIc up to 40...50%. The effective non-local interaction in 2D structure based on 4-junction interferometer cell can be provided by the regular single flux quantum array flow across it. The wide tolerable spread in ΔIc allows one to realize both (i) phase-locked 2D high-Tc Josephson-junction array with the oscillation frequency F close to characteristic value Fc and (ii) based on Nb tunnel Josephson-junction technology 1D array with the voltage-controlled phase-locked oscillation frequency within wide frequency band from 0.4 Fc to 1.2 Fc
机译:报告了锁相一维和二维约瑟夫森结阵列的数值模拟结果。结果表明,具有非局部结相互作用的多结结构可在高达40 ... 50%的临界电流裕量ΔIc内提供锁相振荡状态。基于4结干涉仪单元的2D结构中有效的非局部相互作用可以通过其上规则的单通量量子阵列流来提供。 ΔIc的宽容差扩展使得人们可以同时实现(i)振荡频率F接近特征值Fc的锁相2D高Tc Josephson结阵列和(ii)基于Nb隧道Josephson结技术的1D阵列0.4 Fc至1.2 Fc的宽频带内的电压控制锁相振荡频率

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