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Creating analogs of thermal distributions from diabatic excitations in ion-trap-based quantum simulation

机译:在基于离子阱的量子模拟中根据非绝热激发创建热分布的类似物

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One broad goal of quantum simulation is to start a simple quantum system in its ground state and slowly evolve the Hamiltonian to a complex one, maintaining the ground state throughout the evolution (called adiabatic state preparation). This provides a natural setting to create a highly entangled and correlated quantum state if the final Hamiltonian supports such a ground state. In ion-trap-based quantum simulations, coherence times are too short to allow for such ground-state evolution for large chains, because the rapid evolution of the system creates excitations to higher energy states. Because the probability for this excitation depends exponentially on the excitation energy and because the thermal distribution also depends exponentially on the excitation energy, we investigate whether this so-called diabatic excitation can create the analog of a thermal distribution; as this could serve as an alternative for creating thermal states of complex quantum systems without requiring contact with a heat bath. In this work, we explore this relationship and determine situations, where diabatic excitation can approximately create thermal states.
机译:量子模拟的一个广泛目标是在基态下启动一个简单的量子系统,然后将哈密顿量缓慢演化为复杂的系统,并在整个演化过程中保持基态(称为绝热态准备)。如果最终的哈密顿量支持这样的基态,则这提供了自然的设置来创建高度纠缠和相关​​的量子态。在基于离子阱的量子模拟中,相干时间太短,以至于无法进行大链的这种基态演化,因为系统的快速演化会激发出对更高能态的激发。由于这种激发的可能性与激发能量成指数关系,并且由于热分布也与激发能量成指数关系,因此我们研究这种所谓的非绝热激发是否可以产生热分布的模拟。因为这可以作为创建复杂量子系统热态的替代方法,而无需与热浴接触。在这项工作中,我们探索了这种关系并确定了绝热激发可以近似产生热态的情况。

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