Abstract
Fluxon propagation in Long Josephson Junctions (LJJ) has been thoroughly investigated in past years both as a model system for soliton dynamics1 and in view of possible practical applications2. The electrodynamics of a LJJ is described by a perturbed version of the well known sine-Gordon Equation (PSGE), its kink solution corresponding to a magnetic flux quantum propagating in the junction barrier. Recently has attracted considerable interest solitons propagation in arrays of small coupled Josephson junctions3. In this paper we focus our attention on a system constituted of by a one dimensional array of coupled Josephson Junctions, designed in such a way to generate microwave radiation through a controlled fluxon dynamics.
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References
T.A. Fulton and R.C. Dynes, ”Single vortex propagation in Josephson tunnel junctions”, Solid State Commun. 12 (1973) 57.
D.W. McLaughlin and A.C. Scott, ”Perturbation analysys of fluxon dynamics”, Phys. Rev A18, (1978) 1652.
S. Hontsu and J. Ishii, ”Fluxon propagation on a parallel array of microbridge-type Josephson junctions” J. Appl. Phys. 63 (1988) 2021.
see e. g. A. Barone and G. Paternó, “Physics and Applications of Josephson Effect”, Wiley, New York (1982).
S. Pagano, R. Monaco and G. Costabile, “Microwave oscillator using arrays of long Josephson Junctions” IEEE Trans. Magn. MAG-25, 1080 (1989).
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© 1993 Springer Science+Business Media New York
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Filatrella, G., Matarazzo, S., Pagano, S. (1993). Fluxon Dynamics in Discrete Sine Gordon System. In: Christiansen, P.L., Eilbeck, J.C., Parmentier, R.D. (eds) Future Directions of Nonlinear Dynamics in Physical and Biological Systems. NATO ASI Series, vol 312. Springer, Boston, MA. https://doi.org/10.1007/978-1-4899-1609-9_52
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DOI: https://doi.org/10.1007/978-1-4899-1609-9_52
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