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首页> 外文期刊>IEEE Journal of Quantum Electronics >Investigation of high-temperature superconductors with terahertz bandwidth electrical pulses
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Investigation of high-temperature superconductors with terahertz bandwidth electrical pulses

机译:太赫兹带宽电脉冲的高温超导体研究

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摘要

The authors summarize recent attempts to propagate ultrashort electrical pulses containing frequency components up to 1 THz on transmission lines made from thin films of the high-temperature superconductor YBa/sub 2/Cu/sub 3/O/sub 7- delta /. Optoelectronic generation of extremely short electrical transients and jitter-free electrooptic detection of the pulse shape and amplitude as they propagate along the superconducting line make it possible to investigate the high-frequency properties of the high-T/sub c/ material with high accuracy because of the the long interaction lengths that are possible on transmission lines. The authors discuss the influence of epitaxy, surface roughness, and magnetic field on the pulse propagation. Important parameters such as the magnetic penetration depth and the superconducting energy gap are directly determined from the experimental data. Finally, the authors compare their results with weak-coupling BCS (Bardeen-Cooper-Schrieffer) theory.
机译:作者总结了最近的尝试,即在由高温超导体YBa / sub 2 / Cu / sub 3 / O / sub 7-delta的薄膜制成的传输线上传播包含频率高达1 THz的超短电脉冲。超短电瞬态的光电子产生以及沿超导线传播的脉冲形状和幅度的无抖动电光检测,使得可以高精度地研究高T / sub c /材料的高频特性,因为传输线上可能存在的较长相互作用长度。作者讨论了外延,表面粗糙度和磁场对脉冲传播的影响。重要的参数,例如磁穿透深度和超导能隙,直接根据实验数据确定。最后,作者将他们的结果与弱耦合BCS(Bardeen-Cooper-Schrieffer)理论进行了比较。

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