论文标题

量子信息处理带有玻色粒的电路QED

Quantum information processing with bosonic qubits in circuit QED

论文作者

Joshi, Atharv, Noh, Kyungjoo, Gao, Yvonne Y.

论文摘要

量子理论的独特特征为信息处理提供了强大的新范式。将这些数学抽象转换为有用的算法和应用,需要具有显着复杂性和足够低错误率的量子系统。这样的量子系统必须由可靠的硬件制成,该硬件可以连贯存储,处理和提取编码的信息,并具有有效的量子误差校正(QEC)协议以检测和纠正错误。电路量子电动力学(CQED)提供了一个有希望的硬件平台,用于实现强大的量子设备。特别是,在CQED中,使用超导腔的多光子状态编码信息已显示在实现硬件有效QEC方面的成功。在这里,我们回顾了使用骨器代码对量子误差校正的理论和实施方面的最新发展,并报告了使用CQED设备实现容忍缺陷量的量子信息处理所取得的进展。

The unique features of quantum theory offer a powerful new paradigm for information processing. Translating these mathematical abstractions into useful algorithms and applications requires quantum systems with significant complexity and sufficiently low error rates. Such quantum systems must be made from robust hardware that can coherently store, process, and extract the encoded information, as well as possess effective quantum error correction (QEC) protocols to detect and correct errors. Circuit quantum electrodynamics (cQED) provides a promising hardware platform for implementing robust quantum devices. In particular, bosonic encodings in cQED that use multi-photon states of superconducting cavities to encode information have shown success in realizing hardware-efficient QEC. Here, we review recent developments in the theory and implementation of quantum error correction with bosonic codes and report the progress made towards realizing fault-tolerant quantum information processing with cQED devices.

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