Superconducting Josephson-Based Metamaterials for Quantum-Limited Parametric Amplification: A Review

L. Fasolo, A. Greco, E. Enrico
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引用次数: 4

Abstract

In the last few years, several groups have proposed and developed their own platforms demonstrating quantum-limited linear parametric amplification, with evident applications in quantum information and computation, electrical and optical metrology, radio astronomy and basic physics concerning axion detection. Here we propose a short review on the physics behind parametric amplification via metamaterials composed by coplanar wave-guides embedding several Josephson junctions. We present and compare different schemes that exploit the nonlinearity of the Josephson current-phase relation to mix the so-called signal, idler and pump tones. The chapter then presents and compares three different theoretical models, developed in the last few years, to predict the dynamics of these nonlinear systems in the particular case of a 4-Wave Mixing process and under the degenerate undepleted pump assumption. We will demonstrate that, under the same assumption, all the results are comparable in terms of amplification of the output fields.
用于量子限制参量放大的超导约瑟夫逊基超材料:综述
在过去的几年里,几个小组提出并开发了他们自己的平台来演示量子有限线性参数放大,在量子信息和计算、电学和光学计量、射电天文学和轴子探测的基础物理中有明显的应用。在这里,我们简要回顾了由嵌入几个约瑟夫森结的共面波导组成的超材料的参数放大背后的物理学。我们提出并比较了利用约瑟夫森电流-相位关系的非线性来混合所谓的信号、闲散和泵音调的不同方案。然后,本章提出并比较了最近几年发展起来的三种不同的理论模型,以预测这些非线性系统在四波混频过程的特殊情况下和退化未耗尽泵假设下的动力学。我们将证明,在相同的假设下,所有的结果在输出字段的放大方面是可比的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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