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首页> 外文期刊>Physical Review, A >Many-body localization in Ising models with random long-range interactions
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Many-body localization in Ising models with random long-range interactions

机译:具有随机远程相互作用的Ising模型中的多体定位

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We theoretically investigate the many-body localization phase transition in a one-dimensional Ising spin chain with random long-range spin-spin interactions, V-ij alpha|i-j|(-alpha) , where the exponent of the interaction range alpha can be tuned from zero to infinitely large. By using exact diagonalization, we calculate the half-chain entanglement entropy and the energy spectral statistics and use them to characterize the phase transition towards the many-body localization phase at infinite temperature and at sufficiently large disorder strength. We perform finite-size scaling to extract the critical disorder strength and the critical exponent of the divergent localization length. With increasing a , the critical exponent experiences a sharp increase at about alpha(c) similar or equal to 1.2 and then gradually decreases to a value found earlier in a disordered short-ranged interacting spin chain. For alpha< alpha(c) , we find that the system is mostly localized and the increase in the disorder strength may drive a transition between two many-body localized phases. In contrast, for alpha > alpha(c), the transition is from a thermalized phase to the many-body localization phase. Our predictions could be experimentally tested with ion-trap quantum emulator with programmable random long-range interactions, or with randomly distributed Rydberg atoms or polar molecules in lattices.
机译:我们理论上研究一维Ising自旋链中具有随机长程自旋-自旋相互作用的多体定位相变V-ij alpha | ij |(-alpha),其中相互作用范围α的指数可以为从零调到无限大。通过使用精确的对角化,我们计算了半链纠缠熵和能谱统计量,并使用它们来表征在无限大的温度和足够大的无序强度下向多体定位相的相变。我们执行有限大小的缩放,以提取临界无序强度和发散的本地化长度的临界指数。随着a的增加,临界指数会经历大约等于或等于1.2的alpha(c)的急剧增加,然后逐渐减小到更短的,在无序的短程相互作用自旋链中发现的值。对于alpha alpha(c),过渡是从热化阶段到多体定位阶段。我们的预测可以通过具有可编程随机长程相互作用的离子阱量子仿真器,或与晶格中随机分布的Rydberg原子或极性分子进行实验性测试。

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