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Flexible Coaxial Ribbon Cable for High-Density Superconducting Microwave Device Arrays

机译:用于高密度超导微波器件阵列的柔性同轴带状电缆

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Superconducting electronics often require high-density microwave interconnects capable of transporting signals between temperature stages with minimal loss, cross talk, and heat conduction. We report the design and fabrication of superconducting 53 wt% Nb-47 wt% Ti (Nb47Ti) FLexible coAXial ribbon cables (FLAX). The ten traces each consist of a circle divide 0.076 mm NbTi inner conductor insulated with PFA (circle divide 0.28 mm) and sheathed in a shared 0.025 mm thick Nb47Ti outer conductor. The cable is terminated with G3PO coaxial push-on connectors via stainless steel capillary tubing (circle divide 1.6 mm, 0.13 mm thick) soldered to a coplanar wave guide transition board. The 30 cm long cable has 1 dB of loss at 8 GHz with -60 dB nearest neighbor forward cross talk. The loss is 0.5 dB more than commercially available superconducting coax likely due to impedance mismatches caused by manufacturing imperfections in the cable. The reported cross talk is 30 dB lower than previously developed laminated NbTi-on-Kapton microstrip cables. We estimate the heat load from 1 K to 90 mK to he 20 nW per trace, approximately half the computed load from the smallest commercially available superconducting coax from CryoCoax.
机译:超导电子器件通常需要高密度微波互连,能够以最小的损耗,交叉谈话和热传导在温度级之间传输信号。我们报告了超导53wt%Nb-47wt%Ti(Nb47Ti)柔性同轴带状电缆(亚麻)的设计和制造。该十个迹线包括圆形划分0.076毫米NBTI内导体,用PFA(圆形除以0.28 mm),并在共用的0.025mm厚的NB47TI外导体中覆盖。通过不锈钢毛细管(圆形除以1.6mm,0.13mm厚)焊接到共面波导过渡板的G3PO同轴推动连接器终止。 30厘米长的电缆在8 GHz下有1 dB损耗,其中8个GHz,与-60 dB最近邻右前串交谈。由于电缆中的制造缺陷引起的阻抗不匹配,损耗比市售的超导同源更多的是0.5dB。报告的交叉谈话比以前开发的层压的NBTI-ON-KAPTON微带电缆低30 dB。我们估计从1 k到90 mk的热负荷为每条迹线20 nW,大约从低温的最小商业上可获得的超导同轴电缆的大约一半的计算负载。

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