Student Paper Award Announced!!

Session Index

Optical Waveguides and Communications

Oral Session 5 - Optical Communications
Friday, Dec. 5, 2014  11:10-12:10
Chair: Kuei-Huei Lin
Room: F10
Notes: N/A
11:10 - 11:25 Paper No.  2014-FRI-S0208-O001
Chia-Wei Sung Noise Suppression of ASE Sources Using Gain-Saturated Cascaded SOAs for Symmetric 10-Gb/s Remotely Pumped WDM PON Systems
Yi-Lun Lee,Chia-Wei Sung,San-Liang Lee,Hung-Wen Hung,Chun-Liang Yang,

A symmetric bidirectional wavelength-division-multiplexed passive optical network (WDM-PON) scheme is demonstrated with remotely pumped erbium-doped fiber amplifier and noise suppressed amplified spontaneous emission light source by using gain-saturated cascaded semiconductor optical amplifier. 10 Gb/s transmission can be achieved by using larger effective area fiber and forward error correction.

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11:25 - 11:40 Paper No.  2014-FRI-S0208-O002
Jin-Fang Huang 2 × 2 MIMO RoF System at V-Band Employing Single-Sideband Single-Carrier Modulation
Si-Yu Jhang,Chun-Ting Lin,Chun-Hung Ho,Hou-Tzu Huang,Yu-Hsuan Cheng,Jin-Fang Huang,

This electronic document is a “live” template. The various components of your paper [title, text, heads, etc.] are already defined on the style sheet, as illustrated by the portions given in this document. DO NOT USE SPECIAL CHARACTERS, SYMBOLS, OR MATH IN YOUR TITLE OR ABSTRACT.

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11:40 - 11:55 Paper No.  2014-FRI-S0208-O003
Tai-Hsuan Tu Study Thermal on Heating Effect on Ring Resonator
Tai-Hsuan Tu,

Silicon is a material that is highly sensitive to the temperature variation. SOI ring resonator transmittance spectra due to the thermal effects were studied and simulated by COMSOL and FIMMwave. A designed ring structure for low power tuning demonstrated wavelength shift of 6nm with a low input power of 4mW.

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11:55 - 12:10 Paper No.  2014-FRI-S0208-O004
Ling-Yu Zhao 2 by 2 Non-coplanar Polymer Waveguide Realized on Silicon Optical Bench with 45° Micro-reflector
Ling-Yu Zhao,Mao-Yuan Zeng,Chia-Chi Chang,Chin-Ta Chen,Po-Kuan Shen,Mount-Learn Wu,

In this paper, we demonstrate the 22 non-coplanar polymer waveguide based on silicon optical bench (SiOB) with 45° micro-reflector. The 22 polymer waveguide is fabricated by using two photolithography processes. 4 light spots emitting from 22 polymer cores at the output port of the SiOB can be clearly observed.

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