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Adiabatic quantum simulation with a segmented ion trap: Application to long-distance entanglement in quantum spin systems

机译:分段离子阱的绝热量子模拟:量子自旋系统中长距离纠缠的应用

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摘要

We investigate theoretically systems of ions in segmented linear Paul traps for the quantum simulation of quantum spin models with tunable interactions. The scheme is entirely general and can be applied to the realization of arbitrary spin-spin interactions. As a specific application we discuss in detail the quantum simulation of models that exhibit long-distance entanglement in the ground state. We show how tailoring of the axial trapping potential allows for generating spin-spin coupling patterns that are suitable to create long-distance entanglement. We discuss how suitable sequences of microwave pulses can implement Trotter expansions and realize various kinds of effective spin-spin interactions. The corresponding Hamiltonians can be varied on adjustable time scales, thereby allowing the controlled adiabatic preparation of their ground states.
机译:我们从理论上研究分段线性Paul陷阱中的离子系统,用于具有可调相互作用的量子自旋模型的量子模拟。该方案是完全通用的,可以应用于任意自旋-自旋相互作用的实现。作为一个特定的应用,我们详细讨论了在基态下表现出长距离纠缠的模型的量子模拟。我们展示了如何通过调整轴向俘获势来生成适用于产生长距离纠缠的自旋-自旋耦合模式。我们讨论了合适的微波脉冲序列如何实现Trotter展开并实现各种有效的自旋-自旋相互作用。相应的哈密顿量可以在可调的时间尺度上变化,从而允许对其基态的受控绝热制备。

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