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

Jean Guy Caputo, Nikos Efremidis, Nikos Flytzanis, Nikos Lazarides, Yuri Gaididei, Irene Moulitsa, Emmanuel Vavalis

    Research output: Contribution to journalArticlepeer-review

    2 Scopus citations

    Abstract

    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 ID 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 w0/w = 4 (in units of λJ), 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.

    Original languageBritish English
    Pages (from-to)493-517
    Number of pages25
    JournalInternational Journal of Modern Physics C
    Volume11
    Issue number3
    DOIs
    StatePublished - May 2000

    Keywords

    • Josephson Junctions
    • Partial Differential Equations
    • Solitons

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