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Theory of multiwave mixing within the superconducting kinetic-inductance traveling-wave amplifier

机译:超导动感行波放大器内的多波混合理论

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摘要

104506.1-104506.27%We present a theory of parametric mixing within the coplanar waveguide (CPW) of a superconducting nonlinear kinetic-inductance traveling-wave (KIT) amplifier engineered with periodic dispersion loadings. This is done by first developing a metamaterial band theory of the dispersion-engineered KIT using a Floquet-Bloch construction and then applying it to the description of mixing of the nonlinear RF traveling waves. Our theory allows us to calculate signal gain versus signal frequency in the presence of a frequency stop gap, based solely on loading design. We present results for both three-wave mixing (3WM), with applied dc bias, and four-wave mixing (4WM), without dc. Our theory predicts an intrinsic and deterministic origin to undulations of 4WM signal gain with signal frequency, apart from extrinsic sources, such as impedance mismatch, and shows that such undulations are absent from 3WM signal gain achievable with dc. Our theory is extensible to amplifiers based on Josephson junctions in a lumped LC-ladder transmission line (TWPA).
机译:104506.1-104506.27%我们提出了一种采用周期性色散负载设计的超导非线性动感行波(KIT)放大器的共面波导(CPW)内的参数混合理论。首先通过使用Floquet-Bloch结构开发色​​散工程KIT的超材料能带理论,然后将其应用于非线性RF行波混合的描述。我们的理论允许我们仅在加载设计的基础上,在存在频率停止间隙的情况下计算信号增益与信号频率之间的关系。我们同时给出了施加直流偏置的三波混频(3WM)和没有直流电的四波混频(4WM)的结果。我们的理论预测了4WM信号增益随信号频率波动的内在和确定性起源,以及诸如阻抗失配之类的非本源信号,并表明,直流可实现的3WM信号增益中没有这种波动。我们的理论可扩展到集总LC梯形传输线(TWPA)中基于约瑟夫森结的放大器。

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  • 来源
    《Physical review》 |2017年第10期|104506.1-104506.27|共27页
  • 作者

    R. P. Erickson; D. P. Pappas;

  • 作者单位

    National Institute of Standards and Technology, Boulder, Colorado 80305, USA;

    National Institute of Standards and Technology, Boulder, Colorado 80305, USA;

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  • 正文语种 eng
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