论文标题

在RF鱿鱼元原子中调整强非线性

Tuning of Strong Nonlinearity in rf SQUID Meta-Atoms

论文作者

Zack, Ethan, Zhang, Daimeng, Trepanier, Melissa, Cai, Jingnan, Tai, Tamin, Lazarides, Nikos, Hizanidis, Johanne, Anlage, Steven M.

论文摘要

自我谐振射频超导量子干扰装置(RF-squid)元原子的强非线性是通过互调(IM)测量探索的。零直流磁通量中的先前工作表现出IM响应的急剧发作,因为频率通过共振。还观察到了较高频率的第二次发作,在IM响应中造成了突出的差距。通过将这些测量扩展到非零DC通量,可以揭示新的动力学,包括:上述间隙的DC通量刺激性,以及在RF-squid的几何共振附近增强IM响应。通过稳态分析建模的结合以及对RF鱿鱼动力学的完整数值处理,对实验观察到的这些特征进行了理论理解和分析。另外,后者预测了狭窄的参数状态下的混乱。对RF-squid材料中调节的理解对于产生微波信号和可调过滤器的低噪声放大至关重要。

Strong nonlinearity of a self-resonant radio frequency superconducting quantum interference device (rf-SQUID) meta-atom is explored via intermodulation (IM) measurements. Previous work in zero dc magnetic flux showed a sharp onset of IM response as the frequency sweeps through the resonance. A second onset at higher frequency was also observed, creating a prominent gap in the IM response. By extending those measurements to nonzero dc flux, new dynamics are revealed, including: dc flux tunabililty of the aforementioned gaps, and enhanced IM response near geometric resonance of the rf-SQUID. These features observed experimentally are understood and analyzed theoretically through a combination of a steady state analytical modeling, and a full numerical treatment of the rf SQUID dynamics. The latter, in addition, predicts the presence of chaos in narrow parameter regimes. The understanding of intermodulation in rf-SQUID metamaterials is important for producing low-noise amplification of microwave signals and tunable filters.

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