论文标题

学习纠缠崩溃,作为混乱的相过渡

Learning entanglement breakdown as a phase transition by confusion

论文作者

Gavreev, M. A., Mastiukova, A. S., Kiktenko, E. O., Fedorov, A. K.

论文摘要

量子技术需要准备和操纵纠缠多片状状态的方法。但是,确定给定量子状态是否纠缠还是可分离的问题通常是NP硬性问题,甚至很难检测到给定量子状态的纠缠崩溃的任务。在这项工作中,我们开发了一种使用机器学习技术来揭示纠缠崩溃的方法,该技术被称为“混乱学习”。我们考虑了一个量子状态的家庭,该量子已被参数化,以使该家族中的单个临界价值分为单独和纠缠。我们演示了“通过混乱的学习”计划,使我们能够确定关键价值。具体而言,我们研究了两量,两Qutrit和两个QuQuart纠缠状态的方法的性能。此外,我们研究了混淆方案框架中局部去极化和广义振幅阻尼通道的特性。在我们的方法和设置特殊轨迹的参数化中,我们获得了量子通道的纠缠破裂的“相图”,该通道指示纠缠(可分离)状态和纠缠破裂区域的区域。然后,我们扩展了使用“通过混乱的学习”方案来识别任意给定状态是纠缠还是可分离的方式。我们表明,开发的方法为各种状态提供了正确的答案,包括具有积极部分转置的纠缠状态。我们还提供了该方法的更实用的版本,该版本适合研究嘈杂的中间量子设备中的纠缠崩溃。我们使用可用的基于云的IBM量子处理器演示其性能。

Quantum technologies require methods for preparing and manipulating entangled multiparticle states. However, the problem of determining whether a given quantum state is entangled or separable is known to be an NP-hard problem in general, and even the task of detecting entanglement breakdown for a given class of quantum states is difficult. In this work, we develop an approach for revealing entanglement breakdown using a machine learning technique, which is known as 'learning by confusion'. We consider a family of quantum states, which is parameterized such that there is a single critical value dividing states within this family into separate and entangled. We demonstrate the 'learning by confusion' scheme allows us to determine the critical value. Specifically, we study the performance of the method for the two-qubit, two-qutrit, and two-ququart entangled state. In addition, we investigate the properties of the local depolarization and the generalized amplitude damping channel in the framework of the confusion scheme. Within our approach and setting the parameterization of special trajectories, we obtain an entanglement-breakdown 'phase diagram' of a quantum channel, which indicates regions of entangled (separable) states and the entanglement-breakdown region. Then we extend the way of using the 'learning by confusion' scheme for recognizing whether an arbitrary given state is entangled or separable. We show that the developed method provides correct answers for a variety of states, including entangled states with positive partial transpose. We also present a more practical version of the method, which is suitable for studying entanglement breakdown in noisy intermediate-scale quantum devices. We demonstrate its performance using an available cloud-based IBM quantum processor.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源