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A Novel Method for Stripping Cladding Lights in High Power Fiber Lasers and Amplifiers

机译:高功率光纤激光器和放大器中剥离包层光的新方法

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摘要

Fabrication techniques for the manufacture of a high power cladding light stripper are presented. Localized heating and thermal degradation of the recoating materials are the prime limiting factors for the operation of a high power cladding light stripper. In order to overcome this difficulty, the fiber is tapered by hydrofluoric (HF) acid and the surface of the tapered region is exposed to HF acid vapor. The acid vapor creates fine holes and scratches on the fiber surface. A low refractive index polymer is then used to recoat the fiber surface, which extracts the unwanted cladding light from the fiber over a relatively large area. This eliminates the abrupt removal of light and consequently the detrimental thermal effects due to localized heating. The power-handling capability of the device is tested under 90 W of cladding light, and attenuation of 16.7 dB is achieved.
机译:提出了用于制造高功率覆层剥离器的制造技术。重涂材料的局部加热和热降解是高功率覆层剥离器工作的主要限制因素。为了克服该困难,纤维被氢氟酸(HF)制成锥形,并且锥形区域的表面暴露于HF酸蒸汽。酸蒸汽会在纤维表面产生细孔和划痕。然后使用低折射率的聚合物重新涂覆光纤表面,从而在相对较大的面积上从光纤中提取多余的包层光。这消除了光的突然去除,并因此消除了由于局部加热而产生的有害的热效应。在90 W的包层光下测试了该设备的功率处理能力,并实现了16.7 dB的衰减。

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