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On-chip photonic microsystem for optical signal processing based on silicon and silicon nitride platforms

机译:基于硅和氮化硅平台的光信号处理片上电解微系统

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摘要

The explosive growth of data centers, cloud computing and various smart devices is limited by the current state of microelectronics, both in terms of speed and heat generation. Benefiting from the large bandwidth, promising low power consumption and passive calculation capability, experts believe that the integrated photonics-based signal processing and transmission technologies can break the bottleneck of microelectronics technology. In recent years, integrated photonics has become increasingly reliable and access to the advanced fabrication process has been offered by various foundries. In this paper, we review our recent works on the integrated optical signal processing system. We study three different kinds of on-chip signal processors and use these devices to build microsystems for the fields of microwave photonics, optical communications and spectrum sensing. The microwave photonics front receiver was demonstrated with a signal processing range of a full-band (L-band to W-band). A fully integrated microwave photonics transceiver without the on-chip laser was realized on silicon photonics covering the signal frequency of up 10 GHz. An all-optical orthogonal frequency division multiplexing (OFDM) de-multiplier was also demonstrated and used for an OFDM communication system with the rate of 64 Gbps. Finally, we show our work on the monolithic integrated spectrometer with a high resolution of about 20 pm at the central wavelength of 1550 nm. These proposed on-chip signal processing systems potential applications in the fields of radar, 5G wireless communication, wearable devices and optical access networks.
机译:数据中心,云计算和各种智能设备的爆炸性增长受到电流和发热方面的微电子的当前状态的限制。受益于大带宽,有前途的低功耗和被动计算能力,专家认为,基于集成的基于光子的信号处理和传输技术可以破坏微电子技术的瓶颈。近年来,集成的光子学越来越可靠,各种铸造厂提供了先进的制造过程。在本文中,我们审查了我们最近在集成光信号处理系统上的作品。我们研究了三种不同类型的片上信号处理器,并使用这些设备构建微波光子,光通信和光谱感测的微系统。用全带(L频带到W波段)的信号处理范围对微波光子电气前接收器进行说明。在覆盖10GHz的信号频率的硅光子上实现了没有片上激光的完全集成的微波光子图像收发器。还对全光正交频分复用(OFDM)解乘器也参考并用于OFDM通信系统,其速率为64 Gbps。最后,我们展示了我们在整体集成光谱仪上的工作,高分辨率约为20pm的中心波长为1550nm。这些提出的片上信号处理系统在雷达,5G无线通信,可穿戴设备和光学接入网络领域的潜在应用。

著录项

  • 来源
    《Advanced Optical Technologies》 |2018年第2期|共21页
  • 作者单位

    Department of Electronic Engineering Rohm Building Tsinghua University Haidian District Beijing 100084 China;

    Department of Electronic Engineering Rohm Building Tsinghua University Haidian District Beijing 100084 China;

    Department of Electronic Engineering Rohm Building Tsinghua University Haidian District Beijing 100084 China;

    Department of Electronic Engineering Rohm Building Tsinghua University Haidian District Beijing 100084 China;

    Department of Electronic Engineering Rohm Building Tsinghua University Haidian District Beijing 100084 China;

    Department of Electronic Engineering Rohm Building Tsinghua University Haidian District Beijing 100084 China;

    Department of Electronic Engineering Rohm Building Tsinghua University Haidian District Beijing 100084 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

    integrated optics; microwave photonics; OFDM communications; optical signal processing; spectrometer;

    机译:集成光学器件;微波光子;OFDM通信;光学信号处理;光谱仪;

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