Suppr超能文献

具有高氟掺杂二氧化硅泵浦包层的镱掺杂全玻璃泄漏通道光纤。

Ytterbium-doped all glass leakage channel fibers with highly fluorine-doped silica pump cladding.

作者信息

Dong Liang, McKay Hugh A, Fu Libin, Ohta Michiharu, Marcinkevicius Andrius, Suzuki Shigeru, Fermann Martin E

机构信息

IMRA America Inc., 1044 Woodridge Avenue, Ann Arbor, MI 48105, USA.

出版信息

Opt Express. 2009 May 25;17(11):8962-9. doi: 10.1364/oe.17.008962.

Abstract

All glass leakage channel fibers have been demonstrated to be a potential practical solution for power scaling in fiber lasers beyond the nonlinear limits in conventional large mode area fibers. The all glass nature with absence of any air holes is especially useful for allowing the fibers to be used and fabricated much like conventional fibers. Previously, double clad active all glass leakage channel fibers used low index polymer as a pump guide with the drawbacks of being less reliable at high pump powers and not being able to change fiber outer diameter independent of pump guide dimension. In this work, we demonstrate, for the first time, ytterbium-doped double clad all glass leakage channel fibers with highly fluorine-doped silica as pump cladding. The new all glass leakage channel fibers have no polymer in the pump path and have independent control of fiber outer diameters and pump cladding dimension, and, therefore, enable designs with smaller pump guide for high pump absorption and, at the same time, with large fiber diameters to minimize micro and macro bending effects, a much desired features for large core fibers where intermodal coupling can be an issue due to a much increased mode density. An ytterbium-doped double clad PM fiber with core diameter of 80 microm is also reported, which can be coiled in 76 cm diameter coils.

摘要

所有玻璃泄漏通道光纤已被证明是一种潜在的实用解决方案,可用于光纤激光器中的功率扩展,突破传统大模场面积光纤的非线性限制。全玻璃性质且没有任何气孔,这对于使光纤能够像传统光纤一样使用和制造特别有用。以前,双包层有源全玻璃泄漏通道光纤使用低折射率聚合物作为泵浦波导,但存在在高泵浦功率下可靠性较低以及无法独立于泵浦波导尺寸改变光纤外径的缺点。在这项工作中,我们首次展示了以高氟掺杂二氧化硅作为泵浦包层的掺镱双包层全玻璃泄漏通道光纤。新型全玻璃泄漏通道光纤在泵浦路径中没有聚合物,并且能够独立控制光纤外径和泵浦包层尺寸,因此能够设计出具有较小泵浦波导以实现高泵浦吸收,同时具有大光纤直径以最小化微弯和宏弯效应的结构,这是大芯径光纤非常期望的特性,因为模式密度大幅增加,模式间耦合可能成为一个问题。还报道了一种芯径为80微米的掺镱双包层保偏光纤,它可以绕成直径为76厘米的线圈。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验