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Static properties and waveguide modes of a wide lateral window Josephson junction

机译:宽横向窗口约瑟夫森结的静态特性和波导模式

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We developed an efficient hybrid mode expansion method to study the maximum tunneling current as a function of the external magnetic field for a 2D large area lateral window junction. We consider the inhomogeneity in the critical current density, which is taken a piecewise constant. The natural modes of the expansion in y, are the linearized eigen-modes around a static solution which satisfies the 1D sine-Gordon equation with the critical current variation in y, and the boundary conditions determined by the overlap component of the bias current, which can be inline or overlap like. The magnetic field along with the inline component of the bias current enters as a boundary condition on the modal amplitudes. We obtain fast convergent results and for a ratio of idle to window widths of w(0)/w = 4 (in units of lambda(J)), only two modes are needed. A simple scaling is obtained for the maximum tunneling current as we vary the idle region width. We also present the linear electromagnetic waveguide modes taking into account the variation normal to the waveguide of the critical current and the capacitance. [References: 8]
机译:我们开发了一种有效的混合模式扩展方法,以研究2D大面积横向窗口结的最大隧穿电流与外部磁场的关系。我们考虑临界电流密度中的不均匀性,该不均匀性采用分段常数。 y扩展的自然模式是围绕静态解的线性化本征模式,该线性解满足满足y的临界电流变化的一维正弦-戈登方程,以及由偏置电流的重叠分量确定的边界条件,即可以是内联或重叠式。磁场与偏置电流的串联分量一起作为模态振幅的边界条件进入。我们获得快速收敛的结果,并且对于空闲宽度与窗口宽度的比率w(0)/ w = 4(以lambda(J)为单位),仅需要两种模式。当我们改变空闲区域的宽度时,可以获得最大隧穿电流的简单缩放。我们还提出了线性电磁波导模式,其中考虑了临界电流和电容垂直于波导的变化。 [参考:8]

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