论文标题
单个离子量超过一个小时相干时间
Single ion-qubit exceeding one hour coherence time
论文作者
论文摘要
意识到较长的连贯时间量子记忆是当前量子技术的主要挑战。在这里,我们报告了一个超过一个小时的相干时间,与最先进的记录相比,一个超过一个小时的相干时间,改进的顺序。通过应对各种技术挑战,例如环境磁场噪声,相位噪声和微波振荡器的泄漏来实现较长的连贯时间记忆。此外,通过量子过程层析成像系统地研究量子记忆的变质过程,这使得能够应用量子相干性的严格标准,即相干的相对熵。我们还通过保留量子信息的能力,即量子内存的鲁棒性来基准我们的量子记忆,这清楚地表明,超过6000 s,我们的量子存储器保留了非经典的量子信息。我们的结果验证了量子存储器在小时级别的稳定性,并在各种情况下表示其多功能适用性。
Realizing a long coherence time quantum memory is a major challenge of current quantum technology. Here, we report a single \Yb ion-qubit memory with over one hour coherence time, an order of improvement compared to the state-of-the-art record. The long coherence time memory is realized by addressing various technical challenges such as ambient magnetic-field noise, phase noise and leakage of the microwave oscillator. Moreover, systematically study the decoherence process of our quantum memory by quantum process tomography, which enables to apply the strict criteria of quantum coherence, relative entropy of coherence. We also benchmark our quantum memory by its ability in preserving quantum information, i.e., the robustness of quantum memory, which clearly shows that over 6000 s, our quantum memory preserves non-classical quantum information. Our results verify the stability of the quantum memory in hours level and indicate its versatile applicability in various scenarios.