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Nondegenerate Parametric Amplifiers Based on Dispersion-Engineered Josephson-Junction Arrays

机译:基于分散工程的Josephson-Junction阵列的非评票参数放大器

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摘要

Determining the state of a qubit on a time scale much shorter than its relaxation time is an essential requirement for quantum information processing. With the aid of a nondegenerate parametric amplifier, we demonstrate the continuous detection of quantum jumps of a transmon qubit with 90% fidelity of state discrimination. Entirely fabricated by standard two-step optical-lithography techniques, this type of parametric amplifier consists of a dispersion-engineered Josephson-junction (JJ) array. By using long arrays, containing 10(3) JJs, we can obtain amplification in multiple eigenmodes with frequencies below 10 GHz, which is the typical range for qubit readout. Moreover, if a moderate flux tunability of each mode is introduced, employing superconducting-quantum-interference-device junctions, a single amplifier device could potentially cover the entire frequency band between 1 and 10 GHz.
机译:在比其放松时间短得多的时间规模确定Qubit的状态是量子信息处理的基本要求。 借助于一个非评票的参数放大器,我们展示了传输QUBBit的量子跳跃的连续检测,具有90%的辨别度的保真度。 通过标准的两步光学光刻技术完全制造,这种类型的参数放大器包括分散设计的Josephse-Alnction(JJ)阵列组成。 通过使用包含10(3)JJS的长阵列,我们可以在多个EigenModes中获得放大,其中频率低于10 GHz,这是Qubit读数的典型范围。 此外,如果引入了每个模式的中等通量可调性,则采用超导量子干扰装置结,则单个放大器装置可能覆盖1到10GHz之间的整个频带。

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