On-chip photonic spatial-temporal descrambler

Chip Pub Date : 2023-06-01 DOI:10.1016/j.chip.2023.100043
Wenkai Zhang , Xueyi Jiang , Wentao Gu , Junwei Cheng , Hailong Zhou , Jianji Dong , Dongmei Huang , Xinliang Zhang
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引用次数: 2

Abstract

As an indispensable part to compensate for the signal crosstalk in fiber communication systems, conventional digital multi-input multi-output (MIMO) signal processor is facing the challenges of high computational complexity, high power consumption and relatively low processing speed. The optical MIMOenables the best use of light and has been proposed to remedy this limitation. However, the currently existing optical MIMO methods are all restricted to the spatial dimension, while the temporal dimension is neglected. Here, an on-chip spatial-temporal descrambler with four channels were devised and its MIMO functions were experimentally verified simultaneously in both spatial and temporal dimensions. The spatial crosstalk of single-channel descrambler and four-channel descrambler is respectively less than -21 dB and -18 dB, and the time delay is simultaneously compensated successfully. Moreover, a more universal model extended to mode-dependent loss and gain (MDL) compensation was further developed, which is capable of being cascaded for the real optical transmission system. The first attempt at photonic spatial-temporal descrambler enriched the varieties of optical MIMO, and the proposed scheme provided a new opportunity for all-optical MIMO signal processing.

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片上光子时空解扰器
传统的数字多输入多输出(MIMO)信号处理器作为光纤通信系统中补偿信号串扰不可或缺的部分,面临着计算复杂度高、功耗高和处理速度相对较低的挑战。光学MIMO能够最好地利用光,并已被提出来弥补这一限制。然而,目前现有的光学MIMO方法都局限于空间维度,而忽略了时间维度。在此,设计了一种具有四个信道的片上时空解扰器,并在空间和时间维度上同时对其MIMO功能进行了实验验证。单通道解扰器和四通道解扰者的空间串扰分别小于-21dB和-18dB,并且成功地同时补偿了时延。此外,进一步开发了一个更通用的模型,扩展到模式相关的损耗和增益(MDL)补偿,该模型能够级联到实际的光传输系统中。光子时空解扰器的首次尝试丰富了光MIMO的种类,所提出的方案为全光MIMO信号处理提供了新的机会。
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