Invention Grant
US08509588B2 Amplifying optical fiber operating at a wavelength in the range of 1000-1700 nm, methods of fabricating the same, and fiber laser
有权
在1000-1700nm波长范围内工作的放大光纤,其制造方法和光纤激光器
- Patent Title: Amplifying optical fiber operating at a wavelength in the range of 1000-1700 nm, methods of fabricating the same, and fiber laser
- Patent Title (中): 在1000-1700nm波长范围内工作的放大光纤,其制造方法和光纤激光器
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Application No.: US12067698Application Date: 2006-09-08
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Publication No.: US08509588B2Publication Date: 2013-08-13
- Inventor: Evgeny Mikhailovich Dianov , Vladislav Vladimirovich Dvoirin , Valery Mikhailovich Mashinsky , Alexei Nikolaevich Guryanov , Andrei Alexandrovich Umnikov
- Applicant: Evgeny Mikhailovich Dianov , Vladislav Vladimirovich Dvoirin , Valery Mikhailovich Mashinsky , Alexei Nikolaevich Guryanov , Andrei Alexandrovich Umnikov
- Applicant Address: RU Moscow
- Assignee: Fiber Optics Research Center of The Russian Academy of Sciences
- Current Assignee: Fiber Optics Research Center of The Russian Academy of Sciences
- Current Assignee Address: RU Moscow
- Agency: Womble Carlyle
- Priority: RU2005129648 20050922
- International Application: PCT/RU2006/000475 WO 20060908
- International Announcement: WO2007/035131 WO 20070329
- Main IPC: G02B6/02
- IPC: G02B6/02 ; H01S3/30 ; C03C13/04 ; C03C3/06 ; C03C3/083 ; H04B10/12

Abstract:
An amplifying optical fiber includes a core containing oxides of elements selected from the group consisting of silicon, germanium, phosphorus, bismuth, aluminum, gallium with a concentration of bismuth oxide of 10-4-5 mol %, a total concentration of silicon and germanium oxides of 70-99.8999 mol %, a total concentration of aluminum and gallium oxides of 0.1-20 mol % wherein both aluminum and gallium oxide are present and a ratio of aluminum oxide to gallium oxide is at least two, and a concentration of phosphorus oxide from 0 to 10 mol %, and provides a maximum optical gain at least 10 times greater than the nonresonant loss factor in the optical fiber. An outside oxide glass cladding comprises fused silica. The core has an absorption band in the 1000 nm region, pumping to which region provides an increased efficiency of power conversion of pump light into luminescence light in the 1000-1700 nm range.
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