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Temperature distribution in SFCLs based on Au/YBCO films during quenches

机译:淬火过程中基于Au / YBCO薄膜的SFCL中的温度分布

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We investigated temperature distribution in SFCLs based on Au/YBa_2Cu_3O_7 (YBCO). SFCLs were fabricated by patterning Au/ YBCO thin films grown on sapphire substrates into meander lines by photolithography. A gold film grown on the back side of the substrate was patterned into a meander line, and used as a thermometer. The front meander line was subjected to simulated AC fault currents, and the back line to DC current. Resistance of the front and back meander lines were measured and analyzed. The SFCLs were immersed in liquid nitrogen during the experiment for effective cooling. The temperature at the back side was close to that at the front side, and was closer at lower temperatures. This was observed at all stripes. The oscillatory component of the resistance of the back meander line is smaller than, and out-of-phase with that of the front meander line, which was more pronounced at higher temperatures. These results were analyzed quantitatively with the concept of heat transfer within the SFCL and to surroundings. Solutions for a heat equation explained the temperature distribution in SFCLs quantitatively: data coincided well with the solutions. In addition, quench development near the quench start point could be understood better than before, using the results.
机译:我们研究了基于Au / YBa_2Cu_3O_7(YBCO)的SFCL中的温度分布。通过光刻将蓝宝石衬底上生长的Au / YBCO薄膜图案化成曲折线,从而制成SFCL。将在基板背面生长的金膜构图成曲折线,并用作温度计。前曲折线受到模拟的交流故障电流,后曲折线受到直流电流。测量和分析前曲折线和后曲折线的电阻。在实验过程中,将SFCL浸入液氮中以进行有效冷却。背面的温度接近于正面的温度,而在较低的温度下则接近。在所有条纹上都观察到了这一点。后曲折线的电阻的振荡分量小于前曲折线,并且与前曲折线异相,这在较高温度下更为明显。使用SFCL内部和周围环境的热传递概念对这些结果进行了定量分析。一个热方程的解可以定量地解释SFCL中的温度分布:数据与解非常吻合。另外,使用该结果可以比以前更好地理解淬灭起点附近的淬火发展。

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