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High Brightness, Fiber Coupled Single Emitter Arrays

机译:高亮度,光纤耦合单发射器阵列

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Commercial high power fiber coupled diode lasers reach power levels of 200W from a 0.2mm fiber, NA=0.2. 2D fiber coupled single emitter (SE) arrays are described delivering 500W from a 0.2mm fiber. The beam quality of standard 90μm single emitter (SE) is 6mm~*mrad (slow axis) and 0.7mm~*mrad (fast axis) including errors from fast axis lensing. 3 SEs (24) can be arranged in slow axis (fast axis) to fill the aperture for coupling into a 0.2mm fiber, NA=0.2. For high efficiency, beam shaping optics are avoided. A lens array for slow axis collimation and a focusing optic complete the fiber coupled module. 44 SEs' are arranged as a 2D array, polarization multiplexed and coupled into a 0.2mm fiber, NA=0.2. 62% optical to optical and 75% coupling efficiency are achieved, close to the modeled coupling efficiency of 80%. Alignment tolerances in the system do account for additional losses. Precise manufacturing processes are essential. The SEs on submounts are soldered in one reflow process to a common heatsink and FAC-lensing station automatically aligns the lens based on image processing ensuring minimum total lensing errors (focusing and pointing) of each SE to <15% of total spot size. Tighter tolerances during SE mounting, improved fast axis collimation and a redesigned coupling optic will increase the coupling efficiency to 80% resulting in 410W linear polarized output from the 0.2mm fiber, NA=0.2. Polarization (800W) and dense wavelength multiplexing (1.4kW) open the door to kilowatt level.
机译:商业高功率光纤耦合二极管激光器的0.2mm光纤功率等级为200W,NA = 0.2。描述了2D光纤耦合单发射器(SE)阵列从0.2mm光纤提供500W的功率。标准的90μm单发射器(SE)的光束质量为6mm〜* mrad(慢轴)和0.7mm〜* mrad(快轴),包括快速轴透镜产生的误差。可以在慢轴(快轴)中排列3个SE(24),以填充用于耦合到0.2mm光纤中的孔径,NA = 0.2。为了获得高效率,避免使用光束整形光学器件。用于慢轴准直的透镜阵列和聚焦光学器件构成了光纤耦合模块。将44个SE's排列为2D阵列,偏振复用并耦合到0.2mm的光纤中,NA = 0.2。实现了62%的光学对光学效率和75%的耦合效率,接近80%的模型化耦合效率。系统中的对准公差确实会造成额外的损失。精确的制造过程至关重要。底座上的SE在一个回流焊过程中焊接到一个普通的散热器上,FAC镜头站根据图像处理自动对准镜头,从而确保每个SE的总镜头误差(聚焦和指向)最小,小于总光斑尺寸的15%。 SE安装过程中的公差更小,改善的快速轴准直和重新设计的耦合光学器件将使耦合效率提高至80%,从而使0.2mm光纤产生410W线性偏振输出,NA = 0.2。极化(800W)和密集波长多路复用(1.4kW)开启了千瓦级的大门。

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