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Novel beam delivery fibers for delivering flat-top beams with controlled BPP for high power CW and pulsed laser applications

机译:新型光束传输光纤,用于在高功率连续波和脉冲激光应用中以受控的BPP传输平顶光束

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摘要

Single-mode (SM) kW-class fiber lasers are the tools of choice for material processing applications such as sheet metal cutting and welding. However, application requirements include a flat-top intensity profile and specific beam parameter product (BPP). Here, Nufern introduces a novel specialty fiber technology capable of converting a SM laser beam into a flat-top beam suited for these applications. The performances are demonstrated using a specialty fiber with 100 μm pure silica core, 0.22 NA surrounded by a 120 μm fluorine-doped layer and a 360 μm pure silica cladding, which was designed to match the conventional beam delivery fibers. A SM fiber laser operating at a wavelength of 1.07 μm and terminated with a large-mode area (LMA) fiber with 20 μm core and 0.06 NA was directly coupled in the core of the flat-top specialty fiber using conventional splicing technique. The output beam profile and BPP were characterized first with a low-power source and confirmed using a 2 kW laser and we report a beam transformation from a SM beam into a flat-top intensity profile beam with a 3.8 mm*mrad BPP. This is, to the best of our knowledge, the first successful beam transformation from SM to MM flat-top with controlled BPP in a single fiber integrated in a multi-kW all-fiber system architecture.
机译:单模(SM)kW级光纤激光器是材料加工应用(例如钣金切割和焊接)的首选工具。但是,应用需求包括平顶强度分布图和特定的光束参数乘积(BPP)。在这里,Nufern引入了一种新颖的特种光纤技术,该技术能够将SM激光束转换为适合这些应用的平顶光束。使用具有100μm纯硅纤芯,0.22 NA和120μm氟掺杂层和360μm纯硅包层围绕的特种光纤来证明性能,该光纤被设计为与传统的光束传输光纤匹配。使用传统的拼接技术将以1.07μm的波长工作并终止于具有20μm纤芯和0.06 NA的大模区域(LMA)光纤的SM光纤激光器直接耦合到平顶特种光纤的纤芯中。首先使用低功率功率表征输出光束轮廓和BPP,并使用2 kW激光对其进行确认,我们报告了光束从SM光束转换为具有3.8 mm * mrad BPP的平顶强度轮廓光束。据我们所知,这是第一个成功的将SM转换为具有受控BPP的单平面从SMA转换为MM的平板式设备,并将其集成在多千瓦全光纤系统架构中的单根光纤中。

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