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60dB high-extinction auto-configured Mach-Zehnder interferometer

机译:60dB高消光自动配置的马赫曾德尔干涉仪

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摘要

Imperfections in integrated photonics manufacturing have a detrimental effect on the maximal achievable visibility in interferometric architectures. These limits have profound implications for further photonics technological developments and in particular for quantum photonics technologies. Active optimisation approaches, together with reconfigurable photonics, have been proposed as a solution to overcome this. In this paper, we demonstrate an ultra-high (60 dB) extinction ratio in a silicon photonic device consisting of cascaded Mach-Zehnder interferometers, in which additional interferometers function as variable beamsplitters. The imperfections of fabricated beamsplitters are compensated using an automated progressive optimization algorithm with no requirement for pre-calibration. This work shows the possibility of integrating and accurately controlling linear-optical components for large-scale quantum information processing and other applications.
机译:集成光子制造中的缺陷会对干涉式架构中可实现的最大可见度产生不利影响。这些限制对进一步的光子技术发展,特别是对量子光子技术具有深远的影响。主动优化方法以及可重新配置的光子学已被提议作为克服这一问题的解决方案。在本文中,我们展示了由级联Mach-Zehnder干涉仪组成的硅光子器件中的超高消光比(> 60 dB),其中附加的干涉仪用作可变分束器。使用自动化的渐进式优化算法可以补偿预制分束器的缺陷,而无需进行预校准。这项工作表明为大规模量子信息处理和其他应用集成和精确控制线性光学组件的可能性。

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