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Thermal effect of contacts on the current-voltage characteristics of high T/sub c/ YBa/sub 2/Cu/sub 3/O/sub x/ superconductor films

机译:触点的热效应对高T / sub c / YBa / sub 2 / Cu / sub 3 / O / sub x /超导体薄膜的电流-电压特性的影响

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The effect of contact-generated heat on the current-voltage characteristics of thin superconducting films is examined. The generation of heat at the contact creates a transient normal zone adjacent to the interface that propagates into the film and causes the electrical characteristics to be nonlinear and time-dependent. A transient one-dimensional fin-type heat equation is utilized to predict the temperature field, which is evaluated by a finite difference scheme. Specific cases of YBa/sub 2/Cu/sub 3/O/sub x/ films connected via indium leads are considered. Two parameters of importance are introduced: transition time and transition current. The transition time is defined as the time elapsed before a normal zone is created in the superconducting film and the transition current density is the current density that must be reached before a normal zone is created. These parameters are evaluated for three different types of current pulses and for different operating temperatures.
机译:研究了接触产生的热量对超导薄膜电流-电压特性的影响。触点处的热量产生会在邻近界面的瞬态法线区域内传播,并传播到薄膜中,并使电特性呈非线性且随时间变化。利用瞬态一维鳍式热方程来预测温度场,该温度场通过有限差分方案进行评估。考虑了通过铟铅连接的YBa / sub 2 / Cu / sub 3 / O / sub x /薄膜的具体情况。引入了两个重要的参数:过渡时间和过渡电流。过渡时间定义为在超导膜中创建正常区域之前经过的时间,并且过渡电流密度是在创建正常区域之前必须达到的电流密度。这些参数针对三种不同类型的电流脉冲和不同的工作温度进行评估。

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