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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Optically and thermally tunable superconducting transmission lines
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Optically and thermally tunable superconducting transmission lines

机译:光和热可调超导传输线

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摘要

Using the method of time-domain optoelectronic sampling spectroscopy, we have tuned the ultrafast electrical pulse propagating through YBa2Cu3O7-x (YBCO) transmission lines as a function of temperature and optical pulse energy. Electrical pulses are generated by photoconductively shorting charged semiconducting optical switches with 70 psec optical pulses at 532 nm. The optically generated and detected electrical pulses have frequencies extending up to 100 GHz. The superconducting transmission lines are microstrip spiral lines on the LaAlO3 substrates. By varying the optical pulse energy from 0 to 23 pJ, the delay time through the 66-mm-long superconducting line is tuned by 54 psec at 55 K and shows a quadratic dependence on the optical pulse energy. As for the 250 mm-long transmission line, the delay of 69 psec is observed as the temperature increases from 26 K to 63 K.
机译:使用时域光电采样光谱法,我们已经调整了通过YBa2Cu3O7-x(YBCO)传输线传播的超快电脉冲与温度和光脉冲能量的关系。电脉冲是通过在532 nm处以70皮秒的光脉冲将带电的半导体光开关光电导短路产生的。光学生成和检测到的电脉冲的频率可以扩展到100 GHz。超导传输线是LaAlO3基板上的微带螺旋线。通过将光脉冲能量从0更改为23 pJ,通过66毫米长的超导线的延迟时间在55 K下被调整了54 psec,并显示出对光脉冲能量的二次依赖性。对于250毫米长的传输线,随着温度从26 K升高到63 K,观察到69 ps的延迟。

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