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Entanglement transition from variable-strength weak measurements

机译:变强度弱测量的纠缠过渡

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We show that weak measurements can induce a quantum phase transition of interacting many-body systems from an ergodic thermal phase with a large entropy to a nonergodic localized phase with a small entropy, but only if the measurement strength exceeds a critical value. We demonstrate this effect for a one-dimensional quantum circuit evolving under random unitary transformations and generic positive operator-valued measurements of variable strength. As opposed to projective measurements describing a restricted class of open systems, the measuring device is modeled as a continuous Gaussian probe, capturing a large class of environments. By employing data collapse and studying the enhanced fluctuations at the transition, we obtain a consistent phase boundary in the space of the measurement strength and the measurement probability, clearly demonstrating a critical value of the measurement strength below which the system is always ergodic, irrespective of the measurement probability. These findings provide guidance for quantum engineering of many-body systems by controlling their environment.
机译:我们表明,弱测量可以诱导相互作用的多体系统从具有大熵的遍历热相到具有小熵的非遍历局部相的量子相变,但前提是测量强度超过临界值。我们证明了在随机for变换和可变强度的一般正算子值测量下发展的一维量子电路的这种效应。与描述有限类型的开放系统的投影测量相反,该测量设备被建模为连续的高斯探针,捕获了大量的环境。通过使用数据崩溃并研究过渡时增大的波动,我们在测量强度和测量概率的空间中获得了一致的相位边界,清楚地表明了测量强度的临界值,在该临界值以下,系统始终是遍历的,而与测量概率。这些发现为控制多体系统的量子工程提供了指导。

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