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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Theory of a Josephson junction parallel array detector sensitive to very weak signals
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Theory of a Josephson junction parallel array detector sensitive to very weak signals

机译:对微弱信号敏感的约瑟夫森结并行阵列检测器的原理

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An array of coupled short junctions (Josephson junction parallel array) is shown to be able to response to ultra-weak signals when it is worked at the onset of nonlinear supratransmission in the hysteresis loop of bistability. The theory is based on the fundamental solutions of the continuous limit (the sine-Gordon equation on the finite interval submitted to Neuman boundary conditions) that result from synchronization and adaptation to the external driving. This provides the solution to a problem that dates back to 1986 [O. H. Olsen and M. R. Samulsen, Phys. Rev. B 34, 3510 (1986)], namely the complete analytical understanding of the bistability in a long Josephson junction or in an array of short junctions. The property allows to conceive ultrasensitive detectors or else, by convenient modulation of the seed, efficient digital amplifiers. Numerical simulations reveal that such a bistable behavior occurs also in two-dimensional lattices where no theory is available yet.
机译:当在双稳态磁滞回线的非线性超传输开始时,一个耦合的短结点阵列(Josephson结点并行阵列)显示能够响应超弱信号。该理论基于连续极限的基本解(在有限区间上的正弦Gordon方程提交给Neuman边界条件),它是由同步和对外部驱动的适应而产生的。这提供了一个可追溯到1986年的问题的解决方案。 H. Olsen和M. R. Samulsen,物理学Rev. B 34,3510(1986)],即对长约瑟夫森结或一系列短结中的双稳态的完整分析理解。该特性允许构思超灵敏的检测器,或者通过种子的便捷调制来设计高效的数字放大器。数值模拟表明,在没有理论可用的二维晶格中,也会发生这种双稳态行为。

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