Semiconductor devices and superconducting interconnections at 77 K: super-semi or semi-super

S. Tewksbury, L. Hornak, M. Hatamian
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引用次数: 0

Abstract

It is noted that, with semiconductor logic at 77 K providing an optimized, local active device behavior for logical operations, high-T/sub c/ superconducting transmission lines and Josephson tunnel junction drivers/receivers can provide a similarly optimized communications environment at 77 K. This combination of low-temperature active electronic devices and high-temperature superconducting interconnections is considered in the present work. The potential performance of transmission lines fabricated from thin-film, high-T/sub c/ superconductors is examined, and several practical issues degrading the potential performance of such interconnections are considered. Attention is given to issues connected with surface impedance, flux motion induced resistance, critical current density, thin film substrates, multilayer interconnections, high-quality surfaces, tunnel junction devices, large-area substrates, and reliability.<>
77k下的半导体器件和超导互连:超级半超级或半超级
值得注意的是,77k的半导体逻辑为逻辑操作提供了优化的本地有源器件行为,高t /sub /超导传输线和约瑟夫森隧道结驱动器/接收器可以在77k下提供类似的优化通信环境。本文考虑了低温有源电子器件与高温超导互连的结合。研究了由薄膜、高t /sub /超导体制成的传输线的潜在性能,并考虑了降低这种互连潜在性能的几个实际问题。重点关注与表面阻抗、磁通运动诱导电阻、临界电流密度、薄膜衬底、多层互连、高质量表面、隧道结装置、大面积衬底和可靠性有关的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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