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Low-loss cable-to-cable parallel connection method for thin-film superconducting flexible microwave transmission lines

机译:用于薄膜超导柔性微波传输线的低损耗电缆到电缆平行连接方法

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摘要

We describe a superconducting (SC) cable-to-cable connection method for thin-film flexible (Nb/polyimide) parallel transmission line cables that exhibits low loss from DC to microwave frequencies. Design, fabrication procedures, assembly methods and characterization results are reported. The connector assembly incorporates a monolithic array of short superconductive bridging traces that function as a ganged electrical splice between two ribbon cables. The assembly is micro-mechanically self-aligned and uses pressure to make simultaneous electrical contacts between multiple 50 mu m wide microstrip signal traces, as well as between ground planes. Each contacting surface comprises thin SC Nb overcoated with ultra-thin Au, providing nearly zero DC resistance and very good RF performance. A simulation model of the microwave performance of microstrip-to-microstrip interconnections at 4.2 K was successfully matched to measurement results. This new cable-to-cable connection approach exhibited an insertion loss < 0.12 dB and a return loss > 15 dB up to 14 GHz. The connections performed reproducibly throughout multiple thermal cycles and multiple disassembly/reassembly cycles.
机译:我们描述了一种用于薄膜柔性(NB /聚酰亚胺)平行传输线缆的超导(SC)电缆到电缆连接方法,其表现出从DC到微波频率的低损耗。报道了设计,制造程序,装配方法和表征结果。连接器组件包括一系列短的超导桥迹迹线,其用作两个带状电缆之间的光合电拼接。组件是微机械自对准的,并使用压力来在多个50μm宽微带信号迹线以及地面之间进行同时电触点。每个接触表面包括用超薄Au涂覆的薄Sc Nb,提供近零的直流电阻和非常好的RF性能。 4.2 k下微带到微带互连的微波性能的仿真模型成功与测量结果相匹配。这种新的电缆到电缆连接方法展示了插入损耗<0.12 dB和回波损耗> 15 dB,最高可达14 GHz。在多个热循环和多个拆卸/重组循环中,连接可重复执行。

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