皮秒
输电线路
直线(几何图形)
超导电性
传输(电信)
材料科学
光电子学
光学
物理
电信
凝聚态物理
计算机科学
激光器
数学
几何学
作者
Vladimir V. Talanov,Derek Knee,David Harms,Kieran Perkins,Andrew Urbanas,Jonathan Egan,Quentin Herr,Anna Herr
标识
DOI:10.1088/1361-6668/ac5783
摘要
Abstract Interconnects are a major discriminator for superconducting digital technology, enabling energy-efficient data transfer and high-bandwidth heterogeneous integration. We report a method to simulate propagation of picosecond pulses in superconducting passive transmission lines (PTLs). A frequency-domain propagator model obtained from the Ansys high-frequency structure simulator (HFSS) field solver is incorporated in a Cadence Spectre circuit model, so that the particular PTL geometry can be simulated in the time-domain. The Mattis Bardeen complex conductivity of the superconductor is encoded in the HFSS field solver as a complex-conductivity insulator. Experimental and simulation results show that Nb 20 Ω microstrip PTLs with 200 nm interlayer dielectric thickness can support propagation of a single-flux-quantum pulse up to 7 mm and a double-flux-quantum pulse up to 28 mm.
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