22 citations to https://www.mathnet.ru/eng/rm725
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V. M. Buchstaber, S. I. Tertychnyi, “Explicit solution family for the equation of the resistively shunted Josephson junction model”, Theoret. and Math. Phys., 176:2 (2013), 965–986
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V. M. Buchstaber, O. V. Karpov, S. I. Tertychnyi, “A system on a torus modelling the dynamics of a Josephson junction”, Russian Math. Surveys, 67:1 (2012), 178–180
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Jan Engelbrecht, Renato Mirollo, “Structure of Long-Term Average Frequencies for Kuramoto Oscillator Systems”, Phys. Rev. Lett, 109:3 (2012)
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Yu. S. Ilyashenko, D. A. Ryzhov, D. A. Filimonov, “Phase-lock effect for equations modeling resistively shunted Josephson junctions and for their perturbations”, Funct. Anal. Appl., 45:3 (2011), 192–203
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V. M. Buchstaber, O. V. Karpov, S. I. Tertychnyi, “Rotation number quantization effect”, Theoret. and Math. Phys., 162:2 (2010), 211–221
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Karpov O.V., Buchstaber V.M., Tertychnaya M.A., Tertychnyi S.I., Sherstobitov S.V., “A quantum digital ac-voltage synthesizer based on pulse-width modulation of the Josephson junction bias current”, J. Communications Technology and Electronics, 54:2 (2009), 234–240
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Karpov O.V., Buchstaber V.M., Tertychniy S.I., Niemeyer J., Kieler O., “Modeling of rf-biased overdamped Josephson junctions”, J. Appl. Phys., 104:9 (2008), 093910
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Karpov O.V., Buchstaber V.M., Sherstobitov S.V., Tertychniy S.I., Tertychnaya M.A., Niemeyer J., “Quantum digital ac waveform synthesizer based on pulse-width modulation method”, J. Appl. Phys., 104:9 (2008), 093911
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V. M. Buchstaber, O. V. Karpov, S. I. Tertychnyi, “Mathematical models of the dynamics of an overdamped Josephson junction”, Russian Math. Surveys, 63:3 (2008), 557–559
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Karpov O.V., Buchstaber V.M., Sherstobitov S.V., Tertychniy S.I., Niemeyer J., Kieler O., “Josephson junction parameters for alternating current wave form synthesis”, J. Appl. Phys., 100:9 (2006), 093907