Guided-wave 1.3/1.55 mu m wavelength division multiplexer based on multimode interference

被引:46
|
作者
Lin, KC
Lee, WY
机构
[1] Department of Electrical Engineering, Tatung Institute of Technology, Taipei
关键词
wavelength division multiplexing; demultiplexing;
D O I
10.1049/el:19960859
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
To improve the wavelength sensitivity of the multimode interference phenomenon and thus reduce the device length, a restricted-resonance multimode interference scheme and a lower beat length ratio were adopted to design a novel 1.3/1.55 mu m wavelength division multiplexer. Using the modal propagation analysis, transmission characteristics of the device were investigated.
引用
收藏
页码:1259 / 1261
页数:3
相关论文
共 50 条
  • [21] GLASS INTEGRATED-OPTICS CIRCUIT FOR 1.48/1.55-MU-M-WAVELENGTH AND 1.30/1.55-MU-M-WAVELENGTH DIVISION MULTIPLEXING AND 1/8 SPLITTING
    ZHANG, GW
    HONKANEN, S
    TERVONEN, A
    WU, CM
    NAJAFI, SI
    APPLIED OPTICS, 1994, 33 (16): : 3371 - 3374
  • [22] ALL-OPTICAL WAVELENGTH SWITCHING FROM 1.3-MU-M TO A 1.55-MU-M WDM WAVELENGTH ROUTED NETWORK - SYSTEM RESULTS
    BARNSLEY, PE
    CHIDGEY, PJ
    IEEE PHOTONICS TECHNOLOGY LETTERS, 1992, 4 (01) : 91 - 94
  • [23] Four channel multimode wavelength division multiplexer and demultiplexer based on photopolymer volume holographic gratings and substrate-guided waves
    Zhou, CC
    Sutton, S
    Chen, RT
    Hunter, BV
    Dempewolf, P
    DESIGN AND MANUFACTURING OF WDM DEVICES, 1998, 3234 : 136 - 139
  • [24] A novel wavelength multiplexer/demutiplexer based on side-port multimode interference coupler
    Wei, Shile
    Jian, Wu
    Zhao, Lingjuan
    Qiu, Jifang
    Yin, Zuoshan
    Hui, Rongqing
    SILICON PHOTONICS AND PHOTONIC INTEGRATED CIRCUITS IV, 2014, 9133
  • [25] WAVELENGTH CONVERSION FROM 1.3 TO 1.55 MU-M USING SPLIT CONTACT OPTICAL AMPLIFIERS
    BARNSLEY, PE
    FIDDYMENT, PJ
    IEEE PHOTONICS TECHNOLOGY LETTERS, 1991, 3 (03) : 256 - 258
  • [26] 1x2 optical waveguide filters based on multimode interference for 1.3-and 1.55-μm operation
    Li, BJ
    Chua, SJ
    Leitz, CW
    Fitzgerald, EA
    OPTICAL ENGINEERING, 2002, 41 (03) : 723 - 727
  • [27] Tightly bending loss measurement for 1.3 μm and 1.55 μm broadband wavelength division multiplexing fiber sensor systems
    Tsao, SL
    Cheng, WM
    OPTICAL SENSING, IMAGING, AND MANIPULATION FOR BIOLOGICAL AND BIOMEDICAL APPLICATIONS, 2000, 4082 : 265 - 274
  • [28] Design and optimization of a 1.3/1.55-μm wavelength selective p-i-n photodiode based on multimode diluted waveguide
    Magnin, V
    Giraudet, L
    Harari, J
    Decoster, D
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2005, 17 (02) : 459 - 461
  • [29] Hybrid integrated optical subassembly module using a polymeric wavelength division multiplexing filter based on multimode interference for 1.31-and 1.55-μm bidirectional operation
    Lim, Jung Woon
    Hwang, Sung Hwan
    Lee, Woo-Jin
    Lee, Tae Ho
    Jeong, Myung Yong
    Kim, Boo-Gyoun
    Rho, Byung Sup
    OPTICAL ENGINEERING, 2010, 49 (06)
  • [30] 1.3-1.55 MU-M WAVELENGTH COMMUNICATION-SYSTEMS - INTEGRATED PHOTORECEIVER ON GAAS SUBSTRATE
    RAZEGHI, M
    RAMDANI, J
    VANBREMEERSCH, J
    VILCOT, JP
    DECOSTER, D
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1987, 134 (09) : C580 - C580