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Multistability and switching in a superconducting metamaterial

机译:超导超材料中的多重稳定性和转换

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The field of metamaterial research revolves around the idea of creating artificial media that interact with light in a way unknown from naturally occurring materials. This is commonly achieved using sub-wavelength lattices of electronic or plasmonic structures, so-called meta-atoms. One of the ultimate goals for these tailored media is the ability to control their properties in situ. Here we show that superconducting quantum interference devices can be used as fast, switchable meta-atoms. We find that their intrinsic nonlinearity leads to simultaneously stable dynamic states, each of which is associated with a different value and sign of the magnetic susceptibility in the microwave domain. Moreover, we demonstrate that it is possible to switch between these states by applying nanosecond-long pulses in addition to the microwave-probe signal. Apart from potential applications for this all-optical metamaterial switch, the results suggest that multistability can also be utilized in other types of nonlinear meta-atoms.RI Jung, Philipp/F-6233-2013OI Jung, Philipp/0000-0002-9871-5025
机译:超材料研究领域围绕着创造人造介质的想法,该介质与光相互作用的方式是自然存在的材料所未知的。通常使用电子或等离激元结构的亚波长晶格(即所谓的亚原子)来实现。这些定制媒体的最终目标之一是能够就地控制其属性。在这里,我们证明了超导量子干涉装置可以用作快速,可切换的亚原子。我们发现它们的固有非线性导致同时稳定的动态状态,每个动态状态都与微波域中磁化率的不同值和符号相关。此外,我们证明,除了微波探针信号外,还可以通过施加纳秒长的脉冲在这些状态之间进行切换。除了这种全光学超材料开关的潜在应用之外,结果表明多重稳定性还可以用于其他类型的非线性超原子.RI Jung,Philipp / F-6233-2013OI Jung,Philipp / 0000-0002-9871- 5025

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