Student Paper Award Announced!!

Session Index

Optical Waveguides and Communications

Oral Session 5 -Communications and Waveguides (III)
Friday, Dec. 5, 2014  11:10-12:10
Chair: Yu-Chung Chang
Room: B17
11:10 - 11:25 Paper No.  2014-FRI-S0206-O002
Hou-Tzu Huang 150-km 100-GHz DD-OFDM-RoF System Employing Pilot-aided Phase Noise Suppression
Hou-Tzu Huang,Chun-Ting Lin,Chia-Chien Wei,Wan-Ling Liang,

Pilot-aided phase noise suppression (PPNS) is employed to demonstrate distance- and linewidth-insensitive 103-GHz DD-OFDM-RoF systems. With 10.3-MHz linewidth, PPNS lowers BER of −6-dBm signal from >10^-2 to <10^-3 over 150-km fiber and 2-m wireless transmission

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11:25 - 11:40 Paper No.  2014-FRI-S0206-O003
Ching-Lin Huang Three-dimensional Optical Path with 1×3 Output Ports Using SOI-based Vertically-splitting Waveguides
Ching-Lin Huang,Chien-Yu Chiu,Po-Kuan Shen,Chin-Ta Chen,Mount-Learn Wu,

A SOI-based 3-D optical path with 1-by-3 output ports is experimentally demonstrated by using vertically-splitting waveguide. Such 3-D optical path is developed for the signal connection in chip level interconnects. The optical coupling efficiency for each output ports are measured as -10.8, -11.74 and -8.45dB.

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11:40 - 11:55 Paper No.  2014-FRI-S0206-O006
Jui-Hung Hung 1 x 2 Polymer Vertical Splitter on Silicon Substrate for Chip-Level Optical Interconnects
Chin-Ta Chen,Po-Kuan Shen,Teng-Zhang Zhu,Chia-Chi Chang,Shu-Shuan Lin,Mao-Yuan Zeng,Chien-Yu Chiu,Hsu-Liang Hsiao,Hsiao-Chin Lan,Yun-Chih Lee,Yo-Shen Lin,Mount-Learn Wu,Jui-Hung Hung,

The 1 x 2 polymer vertical splitter fabricated on a silicon substrate for chip-level optical interconnects is demonstrate.

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11:55 - 12:10 Paper No.  2014-FRI-S0206-O007
Yi-Chia Hwang Parameter Extraction by Microwave Characteristics of two-section Distributed feedback lasers
Yi-Chia Hwang,Chien-Chung Lin,Shun-Chieh Hsu,Yen-Hua Lo,Chen-Yu Chien,Hao-Chung Kuo,

We extracted the parameters of two-section distributed feedback lasers which had 6.5 pairs distributed Bragg reflector by the regeneratively amplified field, the four-wave-mixing fields and the microwave signals are measured by electrical spectrum analyzer (ESA).

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