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Demonstration of chip-based coupled degenerate optical parametric oscillators for realizing a nanophotonic spin-glass

机译:用于实现纳米光学旋转玻璃的芯片基耦合简并的耦合简并的耦合脱晶

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The need for solving optimization problems is prevalent in various physical applications, including neuroscience, network design, biological systems, socio-economics, and chemical reactions. Many of these are classified as non-deterministic polynomial-time hard and thus become intractable to solve as the system scales to a large number of elements. Recent research advances in photonics have sparked interest in using a network of coupled degenerate optical parametric oscillators (DOPOs) to effectively find the ground state of the Ising Hamiltonian, which can be used to solve other combinatorial optimization problems through polynomial-time mapping. Here, using the nanophotonic silicon-nitride platform, we demonstrate a spatial-multiplexed DOPO system using continuous-wave pumping. We experimentally demonstrate the generation and coupling of two microresonator-based DOPOs on a single chip. Through a reconfigurable phase link, we achieve both in-phase and out-of-phase operation, which can be deterministically achieved at a fast regeneration speed of 400 kHz with a large phase tolerance.
机译:解决优化问题的需求在各种物理应用中普遍存在,包括神经科学,网络设计,生物系统,社会经济和化学反应。其中许多被归类为非确定性多项式 - 时间硬,因此难以解决,因为系统缩放到大量元素。最近的光子学研究进展引发了利用耦合的退化光学参数振荡器(DOPOS)的兴趣,以有效地找到了汉菲尔顿人的地面状态,这可用于通过多项式时间映射来解决其他组合优化问题。这里,使用纳米光电硅 - 氮化物平台,我们展示了使用连续波泵的空间多路复用的DoPO系统。我们通过实验证明了两种芯片上两种基于微生物的多托多的产生和耦合。通过可重新配置的相链路,我们实现了相位的相位和超操作,可以以大相公差的快速再生速度确定,可以确定地实现400kHz的快速再生速度。

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