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Laserless trapped-ion quantum simulations without spontaneous scatteringusing microtrap arrays

机译:使用微阱阵列进行无自发散射的无激光俘获离子量子模拟

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We propose an architecture and methodology for large-scale quantum simulations using hyperfine states of trapped ions in an arbitrary-layout microtrap array with laserless interactions. An ion is trapped at each site, and the electrode structure provides for the application of single and pairwise evolution operators using only locally created microwave and radio-frequency fields. The avoidance of short-lived atomic levels during evolution effectively eliminates errors due to spontaneous scattering; this may allow scaling of quantum simulators based on trapped ions to much larger systems than currently estimated. Such a configuration may also be particularly appropriate for one-way quantum computing with trapped-ion cluster states.
机译:我们为使用无激光相互作用的任意布局微阱阵列中的捕获离子的超精细态提出了大规模量子模拟的体系结构和方法。离子被捕获在每个位置,并且电极结构仅使用局部创建的微波和射频场就可提供单向和成对演化算子的​​应用。在进化过程中避免短寿命的原子能级有效地消除了由于自发散射引起的误差。这可能允许将基于捕获离子的量子模拟器缩放到比当前估计的系统大得多的系统。这样的配置也可能特别适合于具有捕获离子簇状态的单向量子计算。

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