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Demonstration of a Coherent Tunable Amplifier for All-Optical Ising Machines

机译:All-光学读卡机的相干调谐放大器的演示

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Coherent Ising machines are a type of optical accelerators that can solve different optimization tasks by encoding the problem in the connection matrix of the network. So far, experimental realizations have been limited to time multiplexed solutions, in which one nonlinear node is present in a feedback loop. In Hewlett Packard Labs, we investigate the implementation of a spatially multiplexed solution, with an array of nominally identical nonlinear nodes. As this avoids the need for a long delayline, this makes the system more suitable for integration and hence mass production. In this paper, we demonstrate a phasesensitive amplifier, a critical component in integrated circuits for this type of all-optical computing, as it allows to overcome circuit losses in the passive connection matrix of the circuit and waveguide losses in the feedback loop. The amplifier is fabricated in amorphous silicon-on- insulator and relies on thermo-optic selfheating in a ring-loaded Mach-Zehnder interferometer, although the concept is transferable to other types of nonlinearities. The effective gain is tunable by controlling the power and phase of the bias input. While we propose this amplifier in the context of all-optical integrated coherent Ising machines, this amplifier can be used in other applications where coherent amplification is required without the need to add a gain material in the fabrication flow.
机译:相干的ising机器是一种光学加速器,可以通过在网络的连接矩阵中的问题中对问题进行解决来解决不同的优化任务。到目前为止,实验性实现仅限于时间复用解决方案,其中一个非线性节点存在于反馈循环中。在Hewlett Packard Labs中,我们调查空间多路复用解决方案的实现,其中一个名义相同的非线性节点。由于这避免了对长时间的延迟线的需求,这使得系统更适合整合和因此批量生产。在本文中,我们展示了一种PHAseSensive放大器,这类全光计算的集成电路中的关键分量,因为它允许克服电路的被动连接矩阵中的电路损耗和反馈回路中的波导损耗。虽然该概念可转移到其他类型的非线性,但是放大器在无定形的硅和无定形硅 - Zehnder干涉仪中制造并依赖于载荷的Mach-Zehnder干涉仪中的热光学自拍。通过控制偏置输入的功率和相位来调谐有效增益。虽然我们在全光学集成相干机器的上下文中提出该放大器,但是该放大器可以用于其他应用,其中不需要在制造流中添加增益材料。

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