• Title/Summary/Keyword: Planar lightwave circuits

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Silica-Based Planar Lightwave Circuits for WDM Applications

  • Okamoto, Katsunari;Inoue, Yasuyuki;Tanaka, Takuya;Ohmori, Yasuji
    • Electrical & Electronic Materials
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    • v.11 no.11
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    • pp.53-65
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    • 1998
  • Planar lightwave circuits (PLCs) provide various important devices for optical wavelength division multiplexing (WDM) systems, subscriber networks and etc. This paper reviews the recent progress and future prospects of PLC technologies including arrayed-waveguide grating multiplexers, optical add/drop multiplexers, programmable dispersion equalizers and hybrid optoelectronics integration technologies.

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Fabrication of gratings in Planar Lightwave Circuits for External Cavity Laser (외부 공진기 레이저 구현을 위한 평면도파로 격자 제작)

  • Lim, Jong-Hoon;Lim, Gun;Lee, Kyung-Shik;Song, Jeong-Hwan;Cho, Jae-Geol;Jung, Sun-Tae;Oh, Yun-Kyung
    • Korean Journal of Optics and Photonics
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    • v.15 no.6
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    • pp.490-494
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    • 2004
  • Bragg gratings were fabricated in Ge-doped silica planar lightwave circuits (PLC) for different writing conditions to study the growth characteristics. The refractive index modulation of the gratings grew in the PLC with total fluence F according to the power law $\Delta$n=A $F^{B}$. The characteristics of the PLC gratings formed for external cavity lasers match closely to those predicted by the power law. The oscillation spectra of the FP-LD with a Bragg grating grown in the PLC waveguide were also presented.d.

High Reliability Optical Splitters Composed of Planar Lightwave Circuits (PLC Optical Splitter(1${\times}$32)의 신뢰성 평가)

  • Gu, Hyeon-Deok;Im, Hae-Yong;Park, Jong-Hyeok;Park, Gang-Hui
    • Proceedings of the Optical Society of Korea Conference
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    • 2008.07a
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    • pp.265-266
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    • 2008
  • The environmental and mechanical reliability of planar lightwave circuit (PLC)-type optical splitter modules is investigated with references [1, 3]. The module is composed of Y-branching silica-based waveguides on Si connected to optical fiber with UV-curable adhesives and is packaged in a metal case which is filled with humidity-resistant resin. High optical performance such as low loss, low reflection, and thermal stability are obtained through the use of this fiber connection technique. Ten reliability tests including long-term environmental and mechanical and ALT test were carried out for more then ten $1{\times}32$ channel PLC splitter modules.

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Stress-Free Pyrex-Based Optical Waveguide for Planar Lightwave Circuits on Silicon Substrate (실리콘 기판의 광집적회로를 위한 Pyrex 무응력 도파박막)

  • 문형명;정형곤;이용태;김한수;전영윤;정석종;윤선현;이형종
    • Korean Journal of Optics and Photonics
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    • v.9 no.3
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    • pp.156-161
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    • 1998
  • We developed aerosol flame deposition method and made stress-free Pyrex-based optical waveguide on silicon substrate using this method. Zr is doped to control the refractive index of Pyrex waveguide layers. The refractive index of the film changes from 1.460 to 1.475 as the content of Zr changes from 0 to 3 wt%. Er is doped to see the possibility of applying this Pyrex waveguide as PLC-type (Planar Lightwave Circuit) optical amplifier. The refractive index of the film changes from 1.460 to 1.465 as the content of Zr changes from 0 to 1 wt%. Light launching using a prism coupler to the fabricated waveguide showed good quality for application to PLC. The polarization dependence of refractive-index of the Pyrex film is measured to be less than $2{\times}10^{-4}$.

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Fabrication of Planar Lightwave Circuits for Optical Transceiver Connection using Glass Integrated Optics (광 송수신기 연결을 위한 유리집적광학 평면 광 회로 제작)

  • Gang, Dong-Seong;Jeon, Geum-Su;Kim, Hui-Ju;Ban, Jae-Gyeong
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.38 no.6
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    • pp.412-419
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    • 2001
  • In accordance with the PON(passive optical network) could be setup, effective connections with light sources, optical detectors, and optical fibers are the best sensitive points to represent the efficiency of network. Therefore, in this paper we designed and fabricated optical transceiver connection chip that was consisted of channel waveguide, Y-branch, and CWDM on the 2" BK7 glass substrate. This chip can be used for 1.31/1.55${\mu}{\textrm}{m}$ CWDM network and 1.55${\mu}{\textrm}{m}$ region dense WDM network.work.

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Effective Silicon Oxide Formation on Silica-on-Silicon Platforms for Optical Hybrid Integration

  • Kim, Tae-Hong;Sung, Hee-Kyung;Choi, Ji-Won;Yoon, Ki-Hyun
    • ETRI Journal
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    • v.25 no.2
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    • pp.73-80
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    • 2003
  • This paper describes an effective method for forming silicon oxide on silica-on-silicon platforms, which results in excellent characteristics for hybrid integration. Among the many processes involved in fabricating silica-on-silicon platforms with planar lightwave circuits (PLCs), the process for forming silicon oxide on an etched silicon substrate is very important for obtaining transparent silica film because it determines the compatibility at the interface between the silicon and the silica film. To investigate the effects of the formation process of the silicon oxide on the characteristics of the silica PLC platform, we compared two silicon oxide formation processes: thermal oxidation and plasma-enhanced chemical vapor deposition (PECVD). Thermal oxidation in fabricating silica platforms generates defects and a cristobalite crystal phase, which results in deterioration of the optical waveguide characteristics. On the other hand, a silica platform with the silicon oxide layer deposited by PECVD has a transparent planar optical waveguide because the crystal growth of the silica has been suppressed. We confirm that the PECVD method is an effective process for silicon oxide formation for a silica platform with excellent characteristics.

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Refractive Index Control by Dopant for Thick Silica films Deposited by FHD (FHD법에 의해 증착된 실리카막의 도펀트 첨가에 의한 굴절률 제어)

  • 김용탁;서용곤;윤형도;임영민;윤대호
    • Journal of the Korean Ceramic Society
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    • v.40 no.6
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    • pp.589-593
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    • 2003
  • Silica based Planar Lightwave Circuits (PLC) have been applied to various kinds of wave-guided optical passive devices. SiO$_2$ (buffer) and GeO$_2$-SiO$_2$ (core) thick films have been deposited by Flame Hydrolysis Deposition (FHD). The SiO$_2$ films were produced by the flame hydrolysis reaction of halide materials such as SiCl$_4$, POCl$_3$ and BCl$_3$ into an oxy-hydrogen torch. The P concentration increased from 2.0 to 2.8 at% on increasing the POCl$_3$/BCl$_3$ flow ratio. The refractive index increased from 1.4584 to 1.4605 on increasing the POC1$_3$/BC1$_3$ flow ratio from 0.6 to 2.6. The refractive index of GeO$_2$-SiO$_2$ films was controlled by the GeCl$_4$ flow rate. The refractive index increased from 1.4615 to 1.4809 on increasing the GeCl$_4$ flow rate from 30 to 120 sccm.

Development of 1×16 Thermo-optic MZI Switch Using Multimode Interference Coupler (다중모드 간섭현상을 이용한 1×16 마하젠더 스위치 개발)

  • Kim, Sung-Won;Hong, Jong-Kyun;Lee, Sang-Sun
    • Korean Journal of Optics and Photonics
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    • v.17 no.5
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    • pp.469-474
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    • 2006
  • A $1{\times}16$ thermo-optic switch with small excess loss using multimode interference(MMI) couplers is designed, fabricated, and measured. This paper introduces the proposed $1{\times}16$ thermo-optic switch, and discusses the measurement results. The $1{\times}16$ thermo-optic switch is farmed as 4-stage which consists of 15 unit devices. The unit devices are the $2{\times}2$ thermo-optic switches with Mach-Zehnder interferometer(MZI) structure. The characteristics of the $1{\times}16$ thermo-optic switch depends strongly on each unit device. The unit deviceconsists of two 3-dB general interference MMI couplers and two single mode waveguide arms as a phase shifter. First of all, the 3-dB optical splitter and $2{\times}2$ MZI thermo-optic switch have been tested to confirm the characteristics of the unit devices of the $1{\times}16$ MZI thermo-optic switch. Using the measurement results of the unit devices, the $1{\times}16$ MZI thermo-optic switch can be produced with better characteristics. The resultant structure of the MMI coupler with the optical light source of wavelength of 1550nm for the $1{\times}16$ thermo-optic switch is that the width and the optimized length are $25{\mu}m\;and\;1580{\mu}m$, respectively. The smallest excess loss fur the unit device is -0.5dB and the average excess loss is -0.7dB.