首页> 外国专利> AMPLIFYING OPTICAL FIBER OPERATING AT A WAVELENGTH IN THE RANGE OF 1000-1700 NM, METHODS OF FABRICATING THE SAME, AND FIBER LASER

AMPLIFYING OPTICAL FIBER OPERATING AT A WAVELENGTH IN THE RANGE OF 1000-1700 NM, METHODS OF FABRICATING THE SAME, AND FIBER LASER

机译:在1000-1700 NM范围内放大光纤工作波长,制造相同光纤的方法以及光纤激光器

摘要

The invention relates to lasers and fiber optics. An amplifying optical fiber operating at a wavelength in the range of 1000-1700 nm comprises an oxide glass core to provide amplification and at least one oxide glass cladding. According to the invention the core contains oxides of elements selected from the group consisting of silicon, germanium, phosphorus, bismuth, aluminum, gallium at concentration of bismuth oxide of 10-4-5 mol %, concentration of silicon and germanium oxides, taken together or separately, of 70-99.8999 mol %, concentration of aluminum and gallium oxides, taken together or separately, of 0.1-20 mol %, 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 optical fiber 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 as compared to pumping to another absorption bands in which pumping brings about luminescence in the 1000-1700 nm range. The optical fiber emits luminescence in the range of 1000-1700 nm when excited by light with wavelengths in the range of 750-12000 nm and a half-height width of the luminescence band of more than 120 nm, and luminescence band boundaries defined as points in which the luminescence intensity drops twice relative to the intensity in the luminescence band maximum lie within the 1000-1700 nm spectral range.
机译:本发明涉及激光器和光纤。工作在1000-1700nm范围内的波长的放大光纤包括提供放大的氧化物玻璃芯和至少一个氧化物玻璃包层。根据本发明,核包含选自以下的元素的氧化物:硅,锗,磷,铋,铝,镓,其氧化铋的浓度为10-4-5 mol%,硅和氧化锗的浓度合计或分别为70-99.8999 mol%,铝和氧化镓的浓度合计或分别为0.1-20 mol%,氧化磷的浓度为0至10 mol%,并提供至少10倍的最大光学增益大于光纤中的非谐振损耗因子。外部氧化物玻璃包层包括熔融石英。光纤纤芯在1000 nm区域有一个吸收带,与泵浦到另一个吸收带相比,泵浦到该区域可将泵浦光转换为1000-1700 nm范围内的发光光的功率转换效率提高。大约在1000-1700 nm范围内发光。当被波长在750-12000 nm范围内的发光带的半高宽超过120 nm的光激发时,光纤发出的发光在1000-1700 nm范围内,并且发光带边界定义为点其中发光强度相对于最大发光带强度下降两倍位于1000-1700nm光谱范围内。

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