Thermal Poling of Boron-Codoped Germanosilicate Fibre (Joint Special Issue on Recent Progress in Optoelectronics and Communications)
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概要
- 論文の詳細を見る
The dependence of a linear electro-optic (LEO) coefficient induced into boron-codoped germanosilicate fibre on thermal poling conditions (poling voltage, poling temperature and poling time) has been systematically carried out using a Mach-Zehnder interferometer. The LEO coefficient increases as a 〜2.7 power law with the poling voltage; it can be maximally induced into the silica fibre within a temperature range from 250℃ to 300℃; it exponentially increases with poling time until saturation but after that it then decreases. Possible mechanisms of thermal poling are discussed in the light of the experimental results.
- 社団法人電子情報通信学会の論文
- 1999-08-25
著者
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Xu W
Inst. Chemistry Cas Beijing Chn
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Xu Wei
Australian Photonics Co-operative Research Centre Optical Fibre Technology Centre The University Of
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JANOS Mark
Uniphase Fibre Components
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WONG Danny
Australian Photonics Co-operative Research Centre, Optical Fibre Technology Centre, The University o
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FLEMING Simon
Australian Photonics Co-operative Research Centre, Optical Fibre Technology Centre, The University o
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Janos Mark
Uniphase Fibre Components Sydney
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Wong Danny
Australian Photonics Co-operative Research Centre Optical Fibre Technology Centre The University Of
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Fleming Simon
Australian Photonics Co-operative Research Centre Optical Fibre Technology Centre The University Of
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