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首页> 外文期刊>Journal of Superconductivity >Controlling Chaos in the RF-Biased Josephson Junction With Thermal Noise
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Controlling Chaos in the RF-Biased Josephson Junction With Thermal Noise

机译:利用热噪声控制RF偏置的Josephson结中的混沌

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摘要

In this paper the control of chaos in the rf-biased Josephson junction circuit is studied. Numerical simulation indicates that the unstable periodic orbits (UPO) embedded in the chaotic attractor can be stabilized with the delayed feedback technique. Upon controlling, operation state of the chaotic Josephson junction circuit switches back to its conventional state. Namely, phase locking is reestablished and typical I-V curve recovers. Furthermore, we investigate the influence of thermal noise on the control and estimate the range of the environmental temperature for an effective control through numerical simulation.
机译:本文研究了射频偏置约瑟夫森结电路中的混沌控制。数值模拟表明,利用延迟反馈技术可以使嵌入在混沌吸引子中的不稳定周期轨道(UPO)稳定。在控制时,混沌约瑟夫森结电路的操作状态切换回其常规状态。即,重新建立锁相并且恢复典型的I-V曲线。此外,我们研究了热噪声对控制的影响,并通过数值模拟估算了有效控制的环境温度范围。

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