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All-optical wavelet-based orthogonal frequency division multiplexing system based on silicon photonic integrated components

机译:基于硅光子集成元件的全光小波正交正交频分复用系统

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摘要

In this study, the authors discuss in detail the implementation of all-optical orthogonal frequency-division multiplexing system based on discrete wavelet packet transform (DWPT) by using silicon-on-insulator (SOI) cascaded Mach–Zehnder interferometers (MZIs). DWPT can be used in the multiplexing and de-multiplexing of data channels in coherent optical communication in order to improve spectral efficiency excluding a cyclic prefix. DWPT and inverse-DWPT may be realised in an integrated-photonic MZI platform. They demonstrated experimentally the post-fabrication tuning of 1 × 4 cascaded MZI de-multiplexing filters. Tuning procedures effectively overcome fabrication tolerances and meet the target transfer function of the devices. The fabrication platform represents an essential stepping-stone toward the all-optical realisation of DWPT-based multiplexing.
机译:在这项研究中,作者详细讨论了使用绝缘体上硅(SOI)级联的马赫曾德尔干涉仪(MZIs)实现基于离散小波包变换(DWPT)的全光正交频分复用系统的方法。 DWPT可以在相干光通信中用于数据信道的复用和解复用,以提高除循环前缀之外的频谱效率。 DWPT和逆DWPT可以在集成光子MZI平台中实现。他们通过实验证明了1×4级联的MZI多路分解滤波器的制造后调整。调整程序有效地克服了制造公差并满足了器件的目标传递函数。该制造平台代表了基于DWPT的多路复用全光实现的重要垫脚石。

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