A Novel Chirped Fiber Bragg Grating Utilizing Thermal Diffusion of Core Dopant (Special Issue on Optical Fibers and Their Applications)
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概要
- 論文の詳細を見る
A novel technique is proposed to fabricate a chirped fiber Bragg grating utilizing thermal diffusion of core dopant. The chirped grating is written with a uniform period by using UV exposure technique in the fiber whose effective index of the guided mode varies along its length. Thermal diffusion of the core dopant is employed to realize this change of the effective index. Through the thermal diffusion process, the effective index of the fiber decreases from its initial value. When the grating is written in the diffused core region, its reflection wavelength becomes shorter than that in the non-diffused region. The continuous change of effective index is required for making a chirped grating. The fiber is heated by a non-uniform heat source. When the uniform grating is written in this region, the reflection wavelength smoothly changes along the fiber length although the grating period is constant. By optimizing the fiber parameters to realize a highly chirped grating, we have obtained a typical one whose bandwidth is 14.1 nm at half maximum and maximum rejection in transmission is 29 dB. Additionally, the proposed method has an advantage to control the chirp profile with high mechanical reliability.
- 社団法人電子情報通信学会の論文
- 1997-04-25
著者
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Okude S
Fujikura Ltd. Sakura‐shi Jpn
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YAMAUCHI Ryozo
Fujikura Ltd.
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OKUDE Satoshi
Fujikura Ltd., Opto-electronics Laboratory
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SAKAI Tetsuya
Fujikura Ltd., Opto-electronics Laboratory
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SUDOH Masaaki
Fujikura Ltd., Opto-electronics Laboratory
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WADA Akira
Fujikura Ltd., Opto-electronics Laboratory
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Yamauchi Ryozo
Fujikura Ltd. Opto-electronics Laboratory
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Sudoh Masaaki
Fujikura Ltd. Opto-electronics Laboratory
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Sakai Tetsuya
Fujikura Ltd. Opto-electronics Laboratory
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Wada Akira
Fujikura Ltd.
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Wada Akira
Fujikura Ltd. Opto-electronics Laboratory
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- A Novel Chirped Fiber Bragg Grating Utilizing Thermal Diffusion of Core Dopant (Special Issue on Optical Fibers and Their Applications)
- Suppression of Stimulated Brillouin Scattering by Intentionally Induced Periodical Residual-Strain in Single-Mode Optical Fibers (Special Issue on Optical Fiber Cables and Related Technologies)
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