论文标题

通过增强学习的辅助协助跨量子相过渡的更快状态准备

Faster State Preparation across Quantum Phase Transition Assisted by Reinforcement Learning

论文作者

Guo, Shuai-Feng, Chen, Feng, Liu, Qi, Xue, Ming, Chen, Jun-Jie, Cao, Jia-Hao, Mao, Tian-Wei, Tey, Meng Khoon, You, Li

论文摘要

能量差距在有限的多体(MB)系统中近量子相变的量子临界点发展,从而通过绝热参数变化促进基态转换。但是,在实际的应用方案中,这种协议的功效受到了将有限的系统寿命与绝热平衡的必要性所损害,这在最近的一个实验中得到了例证,该实验在确定性的[pnas {\ bf 115},6381(2018年)中准备了三模式平衡的dicke状态。这项工作并没有将瞬时基态跟踪瞬时基础状态,而是大多数绝热的穿越所需的,而是报道了更快的全面策略利用了激动的水平动态。它是根据我们开发的多步培训方案的深入增强学习(DRL)获得的。在没有损失的情况下,在绝热所需时间的一小部分中,准备就绪和目标dicke状态之间的保真度$ \ ge 99 \%$。当包括损失时,根据操作基准进行训练,即准备状态而不是保真度的干涉敏感性,从而在先前报道的时间的一半中提高了敏感性。在$ \ sim 10^4 $ $^{87} $ rb原子的Bose-Einstein冷凝物中实施,平衡的三模式Dicke状态表现出改进的数量挤压$ 13.02 \ pm0.20 $ db,在766毫秒内观察到766毫秒内,在766毫秒内观察到DRL的潜在DRL的潜在量子动力学控制和量子动力学的系统,并进行了量子动力学的准备。

An energy gap develops near quantum critical point of quantum phase transition in a finite many-body (MB) system, facilitating the ground state transformation by adiabatic parameter change. In real application scenarios, however, the efficacy for such a protocol is compromised by the need to balance finite system life time with adiabaticity, as exemplified in a recent experiment that prepares three-mode balanced Dicke state near deterministically [PNAS {\bf 115}, 6381 (2018)]. Instead of tracking the instantaneous ground state as unanimously required for most adiabatic crossing, this work reports a faster sweeping policy taking advantage of excited level dynamics. It is obtained based on deep reinforcement learning (DRL) from a multi-step training scheme we develop. In the absence of loss, a fidelity $\ge 99\%$ between prepared and the target Dicke state is achieved over a small fraction of the adiabatically required time. When loss is included, training is carried out according to an operational benchmark, the interferometric sensitivity of the prepared state instead of fidelity, leading to better sensitivity in about half of the previously reported time. Implemented in a Bose-Einstein condensate of $\sim 10^4$ $^{87}$Rb atoms, the balanced three-mode Dicke state exhibiting an improved number squeezing of $13.02\pm0.20$ dB is observed within 766 ms, highlighting the potential of DRL for quantum dynamics control and quantum state preparation in interacting MB systems.

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