Electro-Photonics: an emerging field for photonic integrated circuits

被引:1
作者
Zhuang, Leimeng [1 ]
Lowery, Arthur J. [1 ,2 ]
机构
[1] Monash Univ, Dept Elect & Comp Syst Engn, Monash Electrophoton Lab, Clayton, Vic 3800, Australia
[2] Monash Univ, ARC Ctr Excellency Ultrahigh Bandwidth Devices Op, Clayton, Vic, Australia
来源
SMART PHOTONIC AND OPTOELECTRONIC INTEGRATED CIRCUITS XX | 2018年 / 10536卷
关键词
Photonic integrated circuits; integrated optics; optical signal processing; optical communications; microwave photonics; waveguide; OPTICAL OFDM;
D O I
10.1117/12.2289251
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Electro-Photonics combines the best of both electronics and optics to tackle the challenges of next generation optical communication networks in terms of capacity, flexibility, and energy efficiency. The optimal sharing of the processing work load between the electrical and optical domain brings considerable benefits to communication system complexity, performance, and construction as well as operational cost. As a key technology, photonic integrated circuits (PICs) play a critical role for the implementation of signal processing in the optical domain, serving for signal generation, switching, and acquisition. PICs point to advancing of network devices such as transmitters, receivers, and switches with desirable features of large bandwidth, high stability, precise control, easy tuning, and potential for low-cost fabrication by enabling miniaturization of complex optical systems on a chip scale. In this paper, we review the PIC research progress of the Monash Electro-Photonics Laboratory and its major contributions to the fields of optical communications and microwave photonics. We focus on applications in optical orthogonal frequency division multiplexing (O-OFDM), Nyquist wavelength division multiplexing (N-WDM), optical pulse manipulation, and programmable optical processors. The results of these works underline not only hardware fabrication capability and performance improvement for electrophotonics, but, more importantly, a new engineering paradigm that stimulates innovations in information and communication technologies.
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页数:7
相关论文
共 34 条
  • [1] Bower J. E., 2015, 75TH ANNUAL DEVICE R
  • [2] Multipass Performance of a Chip-Enhanced WSS for Nyquist-WDM Sub-Band Switching
    Corcoran, Bill
    Zhu, Chen
    Schroder, Jochen
    Zhuang, Leimeng
    Foo, Benjamin
    Burla, Maurizio
    Beeker, Willem P.
    Leinse, Arne
    Roeloffzen, Chris G. H.
    Lowery, Arthur J.
    [J]. JOURNAL OF LIGHTWAVE TECHNOLOGY, 2016, 34 (08) : 1824 - 1830
  • [3] Curri V., 2012, EUROPEAN CONF ON OPT
  • [4] AN N X N OPTICAL MULTIPLEXER USING A PLANAR ARRANGEMENT OF 2 STAR COUPLERS
    DRAGONE, C
    [J]. IEEE PHOTONICS TECHNOLOGY LETTERS, 1991, 3 (09) : 812 - 815
  • [5] Elastic Optical Networking: A New Dawn for the Optical Layer?
    Gerstel, Ori
    Jinno, Masahiko
    Lord, Andrew
    Ben Yoo, S. J.
    [J]. IEEE COMMUNICATIONS MAGAZINE, 2012, 50 (02) : S12 - S20
  • [6] Goh T., 2015, PROC OFC2015
  • [7] Heck MJ, 2015, ININTEGRATED OPTICS, V9365
  • [8] Orthogonal-frequency-division multiplexing for dispersion compensation of long-haul optical systems
    Lowery, AJ
    Armstrong, J
    [J]. OPTICS EXPRESS, 2006, 14 (06): : 2079 - 2084
  • [9] Lowery AJ, 2005, OPTOELECTRONIC DEVICES: ADVANCED SIMULATION AND ANALYSIS, P427, DOI 10.1007/0-387-27256-9_15
  • [10] LOWERY AJ, 2012, OPT EXPRESS, V20