具有脉冲控制色散的超导传输线

S. Shitov, A. Yahya, A. Ustinov
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引用次数: 0

摘要

为了利用短电脉冲控制超导传输线中的相速度,目前正在开发几种方法。提出了一种基于CPW的从左到右(L2R)和从右到左(R2L)可调谐传输线的新设计,该传输线具有嵌入式包含dc- squid的配对谐振器。根据2-μm Nb-Al/AlOx-Nb技术的规则设计了Jc≈0.1 kA/cm2的实验布局,并与包含40个单元的方案模型在20 GHz频率下进行了数值比较。新型色散传输线的特性阻抗提高到30欧姆以上;集成了薄膜衰减器来抑制驻波。发现R2L线存在阻带,表明相速度较慢;这种传输间隙是由于较短的波长(最多100倍)达到配对谐振腔的电长度(70 μm)的影响。对于相位速度较快的L2R线,如果提供所有配对谐振器的频率同步调谐,则传输带几乎可以平坦。模拟没有发现负相速度;而在阻带附近,R2L的差相速度增量为正,而在共振附近,L2R的差相速度增量为负。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Superconducting transmission lines with pulse-controlled dispersion
To control phase velocity in superconducting transmission lines using short electrical pulses, a few approaches are being developed. A new design is developed for left-to-right (L2R) and right-to-left (R2L) tunable transmission lines based on a CPW with embedded paired resonators containing dc-SQUIDs. Experimental layouts are designed according to rules of 2-μm Nb-Al/AlOx-Nb technology for Jc ≈ 0.1 kA/cm2 and compared numerically with a scheme-model containing 40 cells at frequencies up to 20 GHz. Characteristic impedance of new dispersive transmission lines is increased above 30 Ohm; a thin-film attenuator is integrated for suppression of standing waves. A stop-band is found for R2L line demonstrating slower phase velocity; this transmission gap is due to effect of shorter wavelength (up to 100 times) reaching electrical length of the paired resonators cell (70 μm). In case of L2R line with faster phase velocity, the transmission band can be almost flat, if simultaneous tuning of frequency for all paired resonators is provided. No negative phase velocity is found in the simulations; however, the increment of differential phase velocity is positive for R2L near edge of the stop-band and negative near the resonance for L2R case.
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