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Modelling the Relaxation Characteristics of Current- and Optically Controlled Superconducting Switching Elements

机译:建模电流和光控超导开关元件的弛豫特性

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The work presents results of the research on the relations between temperature and resistance relaxation times of thin films of the YBa_2CmO__(7-x) superconductor deposited on substrates with different thermal conductivity (SrTiO_3, MgO, AI_2O_3) and the duration of optical and current pulses (ranging from 5ns to lms) and the temperature level of the superconductor film. The research was conducted by means of the numerical modelling method of the resistance response in the superconducting element. The research findings can be used for developing thin-film structures of switching elements in order to optimize the process of selecting materials and the film thickness adjusted to working modes of these elements.
机译:这项工作提出了关于沉积在具有不同热导率(SrTiO_3,MgO,Al_2O_3)的衬底上的YBa_2CmO __(7-x)超导体薄膜的温度与电阻弛豫时间之间的关系以及光脉冲和电流脉冲的持续时间的研究结果。 (范围从5ns到lms)和超导膜的温度水平。通过超导元件电阻响应的数值建模方法进行了研究。该研究结果可用于开发开关元件的薄膜结构,以优化材料选择过程和根据这些元件的工作模式调整膜厚。

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