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Comparison between experiment and perturbation theory for solitons in Josephson junctions

机译:约瑟夫森结中孤子实验与微扰理论的比较

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摘要

Experiments have been made on long inline and overlap Josephson junctions at various temperatures and current densities. The junctions had parameters such that the recently developed perturbation theory for soliton motion according to the modified sine-Gordon equation should be applicable. A comparison showed that this is the case, and the damping constant was derived as a function of the temperature. In addition, results were obtained for the soliton-antisoliton annihilation process. A fine structure in the zero-field steps at low temperatures is interpreted as being due to plasma oscillations in connection with soliton reflections at the boundaries.
机译:已经在各种温度和电流密度下,对长直列和重叠约瑟夫逊结进行了实验。结具有这样的参数,使得根据修改后的正弦-戈登方程,针对孤子运动最近开发的微扰理论应适用。比较表明情况就是如此,并且阻尼常数是温度的函数。另外,获得了孤子-反孤子an灭过程的结果。低温下零场阶跃中的精细结构被认为是由于等离子体振荡与边界处的孤子反射有关。

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