论文标题

放松时间不会捕获逻辑量子动力学

Relaxation times do not capture logical qubit dynamics

论文作者

Pal, Amit Kumar, Schindler, Philipp, Erhard, Alexander, Rivas, Ángel, Martin-Delgado, Miguel-Angel, Blatt, Rainer, Monz, Thomas, Müller, Markus

论文摘要

量子误差校正程序有可能实现大规模量子计算机的忠实操作。它们通过将其存储在逻辑Qubit中,保护信息免受环境破坏的影响,该量子是根据适当量身定制的量子错误校正编码来构建的,该量子由纠缠的物理Qubits构建。迄今为止,尚无将逻辑Qubits的行为表征为量子记忆的行为的普遍认可的框架。在这项工作中,我们表明,逻辑Qubits的物理Qubit的优点(例如放松时间)的概念概念的概括,并且不会捕获逻辑Qubits的动态。我们从实验上说明,特别是,空间噪声相关性会导致逻辑Qubits的丰富和反直觉的动力学行为。我们表明,由代码空间中的代码空间人群和代码空间内的逻辑运算符形成的一组合适的可观察物可以跟踪和表征逻辑Qubits的动态行为。对这些效果的认识以及本工作中使用的有效表征工具将有助于指导和基准测试逻辑Qubits的实验实现。

Quantum error correction procedures have the potential to enable faithful operation of large-scale quantum computers. They protect information from environmental decoherence by storing it in logical qubits, built from ensembles of entangled physical qubits according to suitably tailored quantum error correcting encodings. To date, no generally accepted framework to characterise the behaviour of logical qubits as quantum memories has been developed. In this work, we show that generalisations of well-established figures of merit of physical qubits, such as relaxation times, to logical qubits fail and do not capture dynamics of logical qubits. We experimentally illustrate that, in particular, spatial noise correlations can give rise to rich and counter-intuitive dynamical behavior of logical qubits. We show that a suitable set of observables, formed by code space population and logical operators within the code space, allows one to track and characterize the dynamical behaviour of logical qubits. Awareness of these effects and the efficient characterisation tools used in this work will help to guide and benchmark experimental implementations of logical qubits.

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