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Dual trapped-ion quantum simulators: an alternative route towards exotic quantum magnets

机译:双俘获离子量子模拟器:通向异质量子磁体的替代途径

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摘要

We present a route towards the quantum simulation of exotic quantum magnetism in ion traps by exploiting dual relations between different spin models. Our strategy allows one to start from Hamiltonians that can be realized with current technology, while properties of an exotic dual model are inferred from measurements of non-local, string-order-like, operators. The latter can be achieved from fluorescence, or from certain spectroscopic measurements, both of which can be combined with finite-size scaling by controlling the number of ions in the dual quantum simulator. We apply this concept to propose quantum simulators of frustrated quantum magnets, and Ising models with multi-spin interactions. We test the validity of the idea by showing numerically that the predictions of an ideal dual quantum simulator are not qualitatively modified by relevant perturbations that occur naturally in the trapped-ion scenario.
机译:通过利用不同自旋模型之间的对偶关系,我们提出了一条通向离子阱中奇异量子磁性的量子模拟的途径。我们的策略允许从可以用当前技术实现的哈密顿方法开始,而异类对偶模型的属性可以通过对非本地,类似于字符串顺序的算符的测量来推断。后者可以通过荧光或某些光谱测量来实现,这两种方法都可以通过控制双量子模拟器中的离子数量与有限尺寸缩放结合使用。我们将此概念应用于提出受挫量子磁体的量子模拟器以及具有多旋转相互作用的Ising模型。我们通过数字显示理想的双量子模拟器的预测没有被捕获离子场景中自然发生的相关扰动定性地修改,从而检验了该想法的有效性。

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