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Static Magnetic Flux Dynamics in One-Dimensional (1D) Josephson Lattices

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Abstract

We investigated static magnetic flux dynamical properties of one-dimensional lattices of Josephson junctions. The discretized wave equations of the Josephson junction lattice were solved using a generalized relaxation iteration algorithm. Numerical simulations indicated that transitions between periodic state and chaotic state will occur as the physical parameters and geometric parameters such as external current y n, magnetic field h 0, h, and the length of Josephson junction μ n and d n , varied. A shot length of the Josephson junction favors stable periodic states.

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Du, H., Liao, H. & Zhou, S. Static Magnetic Flux Dynamics in One-Dimensional (1D) Josephson Lattices. Journal of Superconductivity 16, 537–542 (2003). https://doi.org/10.1023/A:1023829306379

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  • DOI: https://doi.org/10.1023/A:1023829306379

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