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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Ultrafast photoresponse in microbridges and pulse propagation in transmission lines made from high-T/sub c/ superconducting Y-Ba-Cu-O thin films
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Ultrafast photoresponse in microbridges and pulse propagation in transmission lines made from high-T/sub c/ superconducting Y-Ba-Cu-O thin films

机译:由高T / sub c /超导Y-Ba-Cu-O薄膜制成的微桥中的超快光响应和传输线中的脉冲传播

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We report our femtosecond time-resolved measurements of the photoresponse of microbridges in YBa/sub 2/Cu/sub 3/O/sub 7-x/ (YBCO) thin films, performed using an electrooptic sampling technique. Our test structures consisted of 5-/spl mu/m-wide, 7-/spl mu/m-long microbridges, incorporated in 4-mm-long coplanar waveguides, fabricated in 100-nm-thick, high-quality epitaxial YBCO films grown on LaAlO/sub 3/ substrates by laser deposition. When varying the biasing conditions between the superconducting and switched states, we observed transients of single-picosecond duration that corresponded to the nonequilibrium kinetic-inductance and the electron-heating response mechanisms, respectively. In both cases, experimental waveforms could be accurately simulated using a nonequilibrium (two-temperature) electron-heating model. From the fits, the YBCO intrinsic temporal parameters associated with the nonequilibrium conditions were extracted. The electron thermalization time was found to be 0.56 ps in the state above the material's critical temperature (T/sub c/=89 K) and 0.9/spl plusmn/0.1 ps in the superconducting state at temperatures ranging from 20 to 80 K. The electron-phonon energy relaxation time was found to be 1.1 ps. The single-picosecond pulse distortion due to propagation on a YBCO coplanar waveguide was also studied. Our results show that a YBCO microbridge can intrinsically operate as a photodetector at rates exceeding 100 Gb/s, making it useful as an optical-to-electrical transducer for optoelectronic interfaces in YBCO digital electronics. Simultaneously, YBCO mixers, based on hot-electron effects, should exhibit an intrinsic bandwidth exceeding 100 GHz.
机译:我们报告了使用电光采样技术对YBa / sub 2 / Cu / sub 3 / O / sub 7-x /(YBCO)薄膜中的微桥的光响应进行飞秒时间分辨的测量。我们的测试结构包括5 / spl微米/米长,7 / spl微米/米长的微桥,并结合到4毫米长的共面波导中,并以100纳米厚的高质量外延YBCO薄膜制造通过激光沉积在LaAlO / sub 3 /衬底上生长。当改变超导状态和开关状态之间的偏置条件时,我们观察到了单皮秒持续时间的瞬态,分别对应于非平衡动感和电子加热响应机制。在这两种情况下,都可以使用非平衡(两温)电子加热模型精确地模拟实验波形。从拟合中,提取与非平衡条件相关的YBCO固有时间参数。在高于材料的临界温度(T / sub c / = 89 K)的状态下,电子热化时间为0.56 ps;在20至80 K的温度下,在超导状态下,电子热化时间为0.9 / spl plusmn / 0.1 ps。发现电子-声子能量弛豫时间为1.1ps。还研究了由于在YBCO共面波导上传播而引起的单皮秒脉冲失真。我们的结果表明,YBCO微桥本质上可以以超过100 Gb / s的速率用作光电检测器,从而使其可用作YBCO数字电子产品中光电接口的光电转换器。同时,基于热电子效应的YBCO混频器应表现出超过100 GHz的固有带宽。

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