VLSI Photonics: Science and Engineering of Micro/Nano-scale High-Density Photonic Integration

被引:0
|
作者
Lee, El-Hang [1 ]
机构
[1] Inha Univ, Natl Res Ctr Photon Integrat Technol, Micro Nanophoton Adv Res Ctr, Grad Sch Informat & Commun Engn,OPERA, Inchon, South Korea
关键词
microphotonics; nanophotonics; photonic integration; photonic circuits;
D O I
暂无
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
This paper presents an overview of our work on the theory, design, fabrication, and integration of micro/nano-scale optical devices as applicable for all-optical generic and application-specific VLSI photonic integration. The micro/nano-optical devices are designed to perform the functions of collecting, storing, transporting, processing, switching, routing, and distributing optical signals on chips. The integrated optical components include micro/nano-scale optical waveguides, switches, modulators, sensors, directional couplers, multi-mode interference devices, micro-ring resonators, photonic crystal devices, and plasmonic devices made of polymer, silicon and semiconductor materials. The Raper discusses scientific and engineering issues of miniaturizing and integrating micro/nano-scale photonic devices of small and ultra-small dimensions to a very large scale integration density as applicable for specific functions. Scientific and engineering issues are examined and examples of progresses are presented.
引用
收藏
页码:117 / 118
页数:2
相关论文
共 50 条
  • [1] VLSI Photonics: Science and Engineering of High-Density Photonic Circuit Integration in Micro/Nano-Scale
    Lee, El-Hang
    ICTON: 2009 11TH INTERNATIONAL CONFERENCE ON TRANSPARENT OPTICAL NETWORKS, VOLS 1 AND 2, 2009, : 1265 - 1266
  • [2] VLSI Photonics: Science and Engineering of Micro/Nano-scale Photonic Integration
    Lee, El-Hang
    PS: 2009 INTERNATIONAL CONFERENCE ON PHOTONICS IN SWITCHING, 2009, : 222 - 223
  • [3] Design, fabrication and integration of micro/nano-scale photonic crystal devices and plasmonic devices for VLSI photonic integration application
    Lee, El-Hang
    O, B. H.
    Noh, H. S.
    Song, S. H.
    Lee, S. G.
    Park, S. G.
    NANOENGINEERING: FABRICATION, PROPERTIES, OPTICS, AND DEVICES III, 2006, 6327
  • [4] Miniaturization and integration of micro/nano-scale photonic devices: Scientific and technical issues
    Lee, EH
    OPTOELECTRONIC INTEGRATED CIRCUITS VI, 2004, 5356 : 1 - 12
  • [5] Fabrication and integration of micro/nano-scale photonic devices and optical waveguide arrays for optical printed circuit board (O-PCB) and VLSI photonic applications
    Lee, EH
    Lee, SG
    O, BH
    Park, SG
    Kim, KH
    Kang, JK
    Choi, YW
    Photonic Materials, Devices, and Applications, Pts 1 and 2, 2005, 5840 : 523 - 533
  • [6] Micro/nano-scale integration of polymer optical wires and miniaturized photonic devices for optical printed circuit board (O-PCB) and VLSI photonic applications
    Lee, EH
    Lee, SG
    O, BH
    Park, SG
    Kim, KH
    Kwon, YK
    Chin, IJ
    Choi, YW
    Song, SH
    PASSIVE COMPONENTS AND FIBER-BASED DEVICES II, PT 1 AND 2, 2005, 6019 : U425 - U432
  • [7] Glass nanofibers for micro- and nano-scale photonic devices
    Tong, Limin
    Mazur, Eric
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2008, 354 (12-13) : 1240 - 1244
  • [8] Fabrication and integration of VLSI micro/nano-photonic circuit board
    Lee, El-Hang
    Lee, S. G.
    O, B. H.
    Park, S. G.
    Chung, M. Y.
    Kim, K. H.
    Song, S. H.
    MICROELECTRONIC ENGINEERING, 2006, 83 (4-9) : 1767 - 1772
  • [9] Micro/nano-scale design, fabrication, and integration of generic and application-specific optical printed circuit boards (OPCB) and VLSI photonic integrated circuits
    Lee, El-Hang
    Lee, S. G.
    O, B. H.
    Park, S. G.
    Kim, K. H.
    Song, S. H.
    Noh, H. S.
    INTEGRATED OPTICS, SILICON PHOTONICS, AND PHOTONIC INTEGRATED CIRCUITS, 2006, 6183
  • [10] Interface effect based nano-scale TiOX vertical synapse device for high-density integration in neuromorphic computing system
    Cho, Seojin
    Han, Geonhui
    Lee, Chuljun
    Woo, Jiyong
    Lee, Daeseok
    NANOTECHNOLOGY, 2025, 36 (14)