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Group-velocity dispersion analysis of large mode-area doped fibers implemented in a laser cavity during operation

机译:在运行过程中激光腔中实施大型区域掺杂纤维的组速度分散分析

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Developments in the field of high-power fiber lasers require extensive knowledge of the fiber structure parameters in various operating states. In an effort to gather such knowledge, this paper presents the results of dispersion characterization measurements using ytterbium-doped large mode area double-clad fibers implemented in the cavity of a high power fiber laser during operation. The laser cavity is built into one arm of a Mach-Zehnder interferometer. Using dichroic mirrors the radiation of a supercontinuum light source is coupled into the fiber sample. Various types of large mode-area fibers were examined under different operating conditions of the laser setup. Group-velocity dispersion characteristics of two large modearea double-clad fiber amplifiers with various launching laser power levels were analyzed. The dispersion parameters for different fiber designs and various doping levels are investigated over a broad spectral range of about 1.3 μm. The experiment utilizes a supercontinuum source developed within this laboratory, as well as a Mach-Zehnder interferometer with a dual-channel spectral-detection system sensitive to wavelengths from 0.4 μm to 1.7 μm. Temporally resolved spectrograms recorded at distinct delay positions enable the detection of interference fringes for the equalization-wavelength. By applying a Sellmeier polynomial fit to the wavelength dependent differential group-delay function, the group-velocity dispersion has been derived.
机译:高功率光纤激光器领域的开发需要广泛地了解各种操作状态的光纤结构参数。为了收集这些知识,本文介绍了在操作期间高功率光纤激光器的空腔中实现的YTTerbium掺杂的大型大型区域双包层纤维的分散表征测量结果。激光腔内置成马赫Zehnder干涉仪的一个臂。使用分色镜超连续光源的辐射被耦合到光纤的样品。在激光设置的不同操作条件下检查各种类型的大模式纤维。分析了两种大型ModeAlea双层光纤放大器的群速度分散特性,具有各种发射激光功率水平。在约1.3μm的宽光谱范围内研究不同光纤设计和各种掺杂水平的分散参数。该实验利用在该实验室内开发的超级连续源,以及Mach-Zehnder干涉仪,其双通道光谱检测系统与波长为0.4μm至1.7μm的波长。在不同的延迟位置记录的时间上解析的频谱图使得能够检测均衡波长的干扰条纹。通过向波长依赖性差分组延迟函数应用expermeier多项式拟合,已经导出了组速度分散。

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