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Information Journal Paper

Title

Design and Simulation of Josephson Fluxonic Diode Based on Discrete Josephson Junction

Pages

  21-32

Abstract

 he Josephson fluxonic diode is a long Josephson junction that uses oppositely directed magnetic flux quanta, associated with current votrices and antivortices, as its basis operation. the movement of the vortices creates a changing phase. this in turn creates a voltage drop. in this paper, discrete JJ is proposed instead of continues JJ in JFD. Also, by numerical calculation of the discrete sine-Gordon equation, the manner of the carriers is discussed in discrete JJ. Numerically study of the dynamics of JFD based on discrete JJ shows a rectification. Because of it is easy to adjust the value of the junction parammeters, and it is possible to have single flux quantum stuffed in a small area by adjusting the discreetness parameter, it is expected that the useful and practical Josephson fluxonic devices can be made by discrete JJs.

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  • Cite

    APA: Copy

    Khoosheh mehri, Aylar, ERFANIAN, ALIREZA, & RAISSI, FARSHID. (2018). Design and Simulation of Josephson Fluxonic Diode Based on Discrete Josephson Junction. ELECTRONIC INDUSTRIES, 8(4 ), 21-32. SID. https://sid.ir/paper/229611/en

    Vancouver: Copy

    Khoosheh mehri Aylar, ERFANIAN ALIREZA, RAISSI FARSHID. Design and Simulation of Josephson Fluxonic Diode Based on Discrete Josephson Junction. ELECTRONIC INDUSTRIES[Internet]. 2018;8(4 ):21-32. Available from: https://sid.ir/paper/229611/en

    IEEE: Copy

    Aylar Khoosheh mehri, ALIREZA ERFANIAN, and FARSHID RAISSI, “Design and Simulation of Josephson Fluxonic Diode Based on Discrete Josephson Junction,” ELECTRONIC INDUSTRIES, vol. 8, no. 4 , pp. 21–32, 2018, [Online]. Available: https://sid.ir/paper/229611/en

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