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Improvement of Transmission Properties of Visible Pilot Beam for a rugged Hollow Fibers Designed for Er:YAG Laser Delivery

Improvement of Transmission Properties of Visible Pilot Beam for a rugged Hollow Fibers Designed for Er:YAG Laser Delivery

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カテゴリ: 研究会(論文単位)

論文No: OQD17013

グループ名: 【C】電子・情報・システム部門 光・量子デバイス研究会

発行日: 2017/03/06

タイトル(英語): Improvement of Transmission Properties of Visible Pilot Beam for a rugged Hollow Fibers Designed for Er:YAG Laser Delivery

著者名: Iwai Katsumasa(National Institute of Tech. Sendai College),Takaku Hiroyuki(National Institute of Tech. Sendai College),Miyagi Mitsunobu(National Institute of Tech. Sendai College),Shi Yi-Wei(Fudan Univ.),Zhu Xiao-Song(Fudan Univ.),Matsuura Yuji(Tohoku Univ.)

著者名(英語): Katsumasa Iwai(National Institute of Tech. Sendai College),Hiroyuki Takaku(National Institute of Tech. Sendai College),Mitsunobu Miyagi(National Institute of Tech. Sendai College),Yi-Wei Shi(Fudan Univ.),Xiao-Song Zhu(Fudan Univ.),Yuji Matsuura(Tohoku Univ.)

キーワード: Hollow Fiber|Coating|Er:YAG Laser|Hollow Fiber|Coating|Er:YAG Laser

要約(日本語): Flexible hollow fibers with 530-μ-m-bore size were developed for infrared laser delivery. A sturdy hollow fibers were fabricated by liquid-phase coating technique. A silica glass capillary is used as the substrate. An acrylic silicone resin is used as a buffer layer and the buffer layer is firstly coated on the inner surface of the capillary to protect the glass tube from chemical damages due to the following silver plating process. A silver layer was inner-plated by using the conventional silver mirror-plating technique. To improve adhesion of catalyst to the buffer layer, a surface conditioner by condiriser solution has been introduced in the method of silver mirror-plating technique. We discuss improvement of transmission properties of sturdy polymer-coated silver hollow fibers for the Er:YAG laser and red pilot beam delivery.

要約(英語): Flexible hollow fibers with 530-μ-m-bore size were developed for infrared laser delivery. A sturdy hollow fibers were fabricated by liquid-phase coating technique. A silica glass capillary is used as the substrate. An acrylic silicone resin is used as a buffer layer and the buffer layer is firstly coated on the inner surface of the capillary to protect the glass tube from chemical damages due to the following silver plating process. A silver layer was inner-plated by using the conventional silver mirror-plating technique. To improve adhesion of catalyst to the buffer layer, a surface conditioner by condiriser solution has been introduced in the method of silver mirror-plating technique. We discuss improvement of transmission properties of sturdy polymer-coated silver hollow fibers for the Er:YAG laser and red pilot beam delivery.

原稿種別: 英語

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