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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Analysis and FPGA implementation of an autonomous Josephson junction snap oscillator
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Analysis and FPGA implementation of an autonomous Josephson junction snap oscillator

机译:Analynous Josephson结束振荡器的分析和FPGA实施

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An autonomous Josephson junction (JJ) snap oscillator is designed and investigated in this paper. Depending on DC bias current, the proposed snap oscillator has two or no equilibrium points. The stability analysis of the two equilibrium points shows that one of the equilibrium point is unstable and the existence of Hopf bifurcation is established for the other equilibrium point. During the numerical analysis, some interesting dynamical behaviors such as chaotic self-excited attractors, chaotic hidden attractors, antimonotonicity, chaotic bubble hidden attractors, bistable period-1-bubble and coexistence between periodic and chaotic hidden attractors are found. Finally, the Field Programmable Gate Array (FPGA) of proposed snap oscillator is implemented. The results obtained from the FPGA implementation of proposed snap oscillator are qualitatively the same to the one obtained during the numerical simulations.
机译:本文设计和研究了自主Josephson结(JJ)Snap振荡器。 根据直流偏置电流,所提出的按扣振荡器具有两个或没有平衡点。 两个平衡点的稳定性分析表明,一个平衡点是不稳定的,并且为其他平衡点建立了跳跃分叉的存在。 在数值分析期间,发现一些有趣的动态行为,如混沌自我激发吸引子,混乱隐藏的吸引子,抗血管直流性,混沌气泡隐藏的吸引子,身份和混乱隐藏吸引子之间的双稳态时期-1-泡沫和共存。 最后,实现了所提出的按SNAP振荡器的现场可编程门阵列(FPGA)。 从所提出的按SNAP振荡器的FPGA实施获得的结果与数值模拟期间获得的效果定性相同。

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