论文标题

通过预选揭示测量引起的相变

Revealing measurement-induced phase transitions by pre-selection

论文作者

Buchhold, M., Müller, T., Diehl, S.

论文摘要

最近发现测量诱导的阶段和相变的促进了对受控量子平台中一般非自然动态的理解。到目前为止,由于测量结果的随机性,这些转变在很大程度上难以捉摸,因为它们被标准的量子机械可观测值掩盖。在这里,我们建立了一个通用方案 - 预选前 - 使其可观察到:结果随机性通过将系统转向代表性状态而显式地破坏,该状态与指数相对应的许多可能的测量结果对应。值得注意的是,可以轻轻地选择该转向,以至于未经修改基础测量引起的过渡(例如纠缠结构和关键指数)的基本特性。预选前引入了具有宏观秩序的独特的深色或吸收状态,取代了无条件测量轨迹集合的最大混合固定状态。这创建了测量引起的相变与新形式的量子吸收状态转换的链接,可以通过标准均值通过局部顺序参数检测到。该洞察力进一步实现了量子模拟策略,确定了最先进的量子平台中的基本通用类,而无需测量读数。

Pushing forward the understanding of general non-unitary dynamics in controlled quantum platforms has been fueled by the recent discovery of measurement-induced phases and phase transitions. So far, these transitions remained largely elusive, since they are masked in standard quantum mechanical observables due to the randomness of measurement outcomes. Here, we establish a general scheme -- pre-selection -- to make them observable: The outcome randomness is broken explicitly by steering the system towards a representative state, which corresponds to one out of exponentially many possible measurement outcomes. Remarkably, this steering can be chosen so gently that the basic properties of the underlying measurement-induced transition, such as entanglement structure and critical exponents, are not modified. Pre-selection introduces a unique dark or absorbing state with macroscopic order, replacing the maximally mixed stationary state of the unconditioned measurement trajectory ensemble. This creates a link of measurement-induced phase transitions to new forms of quantum absorbing state transitions, which can be detected by standard means via a local order parameter. This insight further enables a quantum simulation strategy, determining the underlying universality class in state-of-the-art quantum platforms without measurement readout.

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