论文标题

在辐射的随机统一电路中争夺过渡

Scrambling Transition in a Radiative Random Unitary Circuit

论文作者

Weinstein, Zack, Kelly, Shane P., Marino, Jamir, Altman, Ehud

论文摘要

我们研究在随机的统一电路中争夺的量子信息,该电路将Qubits与环境交换为$ p $。结果,最初定位的量子信息不仅在系统内传播,而且还会散布到环境中。使用超级订单相关器(OTOC)来表征争夺的表征,我们在定向的渗透普遍性类别中以关键的互换率$ p_c $:$ p <p_c <p <p_c <p <p_c <p <p_c <p <p_c <在有限的时间尺度内统一,表明所有本地运营商都快速换成环境。为了阐明其信息理论后果,我们证明了操作员传播的过渡与观察者从交换或“辐射”量子的转变解码系统的初始量子信息的能力相吻合。我们提出了一个简单的解码方案,该方案在非渗透阶段以完美的保真度恢复了系统的初始信息,并且随着渗透阶段的掉期率降低而不断降低保真度。根据交换量子位的初始状态,我们进一步观察到从系统的相干信息中的相应纠缠过渡到辐射量子台。

We study quantum information scrambling in a random unitary circuit that exchanges qubits with an environment at a rate $p$. As a result, initially localized quantum information not only spreads within the system, but also spills into the environment. Using the out-of-time-order correlator (OTOC) to characterize scrambling, we find a nonequilibrium phase transition in the directed percolation universality class at a critical swap rate $p_c$: for $p < p_c$ the ensemble-averaged OTOC exhibits ballistic growth with a tunable light cone velocity, while for $p > p_c$ the OTOC fails to percolate within the system and vanishes uniformly within a finite timescale, indicating that all local operators are rapidly swapped into the environment. To elucidate its information-theoretic consequences, we demonstrate that the transition in operator spreading coincides with a transition in an observer's ability to decode the system's initial quantum information from the swapped-out, or "radiated," qubits. We present a simple decoding scheme which recovers the system's initial information with perfect fidelity in the nonpercolating phase, and with continuously decreasing fidelity with decreasing swap rate in the percolating phase. Depending on the initial state of the swapped-in qubits, we further observe a corresponding entanglement transition in the coherent information from the system into the radiated qubits.

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