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Nonlinear dynamics of Josephson vortices in a film screen under dc and ac magnetic fields

机译:直流和交流磁场作用下薄膜屏幕中约瑟夫森涡旋的非线性动力学

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摘要

We present detailed numerical simulations of Josephson vortices in a long Josephson junction perpendicular to a thin film screen under strong dc and ac magnetic fields. By solving the sine-Gordon equation, we calculated the threshold magnetic field for penetration of fluxons as a function of frequency, and the power dissipated by oscillating fluxons as functions of the ac field amplitude and frequency. We considered the effects of superimposed ac and dc fields, and a bi-harmonic magnetic field resulting in a vortex ratchet dynamics. The results were used to evaluate the contribution of weak-linked grain boundaries to the nonlinear surface resistance of polycrystalline superconductors under strong electromagnetic fields, particularly thin film screens and resonator cavities.
机译:我们在垂直于薄膜屏幕的长约瑟夫森结中,在强直流和交流磁场下,对约瑟夫森涡旋进行了详细的数值模拟。通过求解正弦-戈登方程,我们计算了用于磁通量渗透的阈值磁场与频率的关系,并计算了通过振荡磁通量而耗散的功率与交流磁场振幅和频率的关系的函数。我们考虑了叠加的交流和直流磁场的影响,以及导致谐波棘轮动力学的双谐波磁场的影响。该结果用于评估弱连接的晶界对强电磁场下多晶超导体的非线性表面电阻的贡献,特别是薄膜屏幕和谐振腔。

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