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On and off-chip detection of radiation from HTS Josephson junctionarrays

机译:芯片上和芯片外检测HTS Josephson连接阵列的辐射

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We have investigated the mutual phase interaction between a single detector junction and a phase-locked three-junction array of high-Tc Josephson junctions. The YBCO Josephson junctions were fabricated on a MgO bicrystal substrate. In the array junction structure, the dc bias current was fed to the junction array having parallel geometry with each pair of junctions shunted by a superconducting coplanar microstrip superconducting loop. The configuration of bias leads was a series connection of interlocking dc SQUIDs geometry which enables all junctions to oscillate at the same frequency. We measured the radiation power of a Josephson-junction array using an off-chip coupled to a radiometer and on-chip coupled to a single junction from centimeter- to millimeter-wave ranges. Clear self-induced Shapiro steps were observed in the current-voltage curves of the detector junction. The power transfered to the single detector junction was estimated from the modulation of Shapiro step height. The maximum detected power level was about 7 nW at frequency 150-250 GHz. The Josephson oscillation power excited the resonant mode coupled to the coplanar microstrip loops
机译:我们研究了单个检测器结与高Tc约瑟夫森结的锁相三结阵列之间的相互相位相互作用。 YBCO约瑟夫森结在MgO双晶衬底上制造。在阵列结结构中,直流偏置电流被馈送到具有平行几何结构的结阵列,每对结都被超导共平面微带超导环路分流。偏置引线的配置是互锁直流SQUID几何形状的串联,这使所有结点都可以相同的频率振荡。我们使用离辐射计耦合的片外和耦合至厘米波至毫米波范围内单个结点的片上芯片,测量了约瑟夫森结阵列的辐射功率。在检测器结的电流-电压曲线中观察到清晰的自感应Shapiro步骤。传输到单个检测器结的功率是根据对Shapiro台阶高度的调制来估算的。在150-250 GHz频率下,最大检测到的功率水平约为7 nW。约瑟夫森(Josephson)振荡功率激发了耦合到共面微带环路的谐振模式

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