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Superconducting Parametric Amplifiers: The State of the Art in Josephson Parametric Amplifiers

机译:超导参数放大器:Josephson参数放大器中的最新技术

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摘要

In superconducting quantum computing, qubit state information is conveyed via low-power microwave fields. As such, ultralow-noise microwave amplification plays a central role in measuring these fields to quickly and accurately infer the qubit state. To this end, parametric amplification, once a well-known concept for low-noise amplifiers during the 1960s and 1970s, has become the leading technology for enabling highly efficient microwave measurements of these quantum circuits. While current research efforts have elements in common with much earlier work, there are some important differences that distinguish this new generation of amplifiers. Here, we try to give an overview of what this excitement is about, how these devices work, and where there are opportunities for improvement.
机译:在超导量子计算中,通过低功率微波场传送Qubit状态信息。因此,超级噪声微波放大在测量这些字段以快速准确地推断QUBBit状态时起着核心作用。为此,参数放大,一旦20世纪60年代和1970年代的低噪声放大器的众所周知的概念,已经成为用于实现这些量子电路的高效微波测量的领先技术。虽然目前的研究努力具有与较早的工作共同的元素,但有一些重要的差异,以区分这一新一代的放大器。在这里,我们试图概述这种兴奋的概述,这些设备如何工作以及有机会改进的机会。

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