论文标题

极化XY-asision机器

Polaritonic XY-Ising Machine

论文作者

Kalinin, Kirill P., Amo, Alberto, Bloch, Jacqueline, Berloff, Natalia G.

论文摘要

各种物理起源的增益止血系统最近表明能够充当硬组合优化问题的模拟最小化器。这些建议是否会导致性能比经典计算的任何优势取决于建立可控耦合的能力,以实现旋转之间足够密集的短期和长距离相互作用。在这里,我们提出了一台基于几何孤立的偏振子冷凝物网络,能够最大程度地减少离散和连续的自旋汉密尔顿人的网络。我们阐明了两种类型的耦合的提议计算平台的性能:相对和绝对。网络节点之间的相互作用可以通过重定向冷凝物之间的发射或使用谐振激发在节点之间发送相位信息来控制。我们讨论提出的机器导致具有预编程耦合的纯偏光子模拟器的条件,或导致混合经典的北极星模拟器。我们认为,针对远程耦合控制的拟议的体系结构可改善对准确性和稳定性的几何耦合冷凝物,以及可以通过Polariton Networks模拟的Spin Hamiltonians的多功能性,范围和连通性。

Gain-dissipative systems of various physical origin have recently shown the ability to act as analogue minimisers of hard combinatorial optimisation problems. Whether or not these proposals will lead to any advantage in performance over the classical computations depends on the ability to establish controllable couplings for sufficiently dense short- and long-range interactions between the spins. Here, we propose a polaritonic XY-Ising machine based on a network of geometrically isolated polariton condensates capable of minimising discrete and continuous spin Hamiltonians. We elucidate the performance of the proposed computing platform for two types of couplings: relative and absolute. The interactions between the network nodes might be controlled by redirecting the emission between the condensates or by sending the phase information between nodes using resonant excitation. We discuss the conditions under which the proposed machine leads to a pure polariton simulator with pre-programmed couplings or results in a hybrid classical polariton simulator. We argue that the proposed architecture for the remote coupling control offers an improvement over geometrically coupled condensates in both accuracy and stability as well as increases versatility, range and connectivity of spin Hamiltonians that can be simulated with polariton networks.

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