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首页> 外文期刊>Applied Optics >Analysis of optical damage mechanisms in hollow-core waveguides delivering nanosecond pulses from a Q-switched Nd:YAG laser
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Analysis of optical damage mechanisms in hollow-core waveguides delivering nanosecond pulses from a Q-switched Nd:YAG laser

机译:分析中空波导中从Q开关Nd:YAG激光器发出纳秒脉冲的光学损伤机理

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摘要

Hollow-core waveguides consisting of a glass capillary tube with an internal reflective coating are capable of delivering pulse energies of tens of millijoules with improved focusability compared to step index fibers of similar core diameter. We demonstrate the capability of these fibers to deliver high-power Q-switched pulses at the fundamental (1064 nm), second (532 nm), and third (355 nm) harmonics of a Nd:YAG laser, both in terms of peak power and beam quality delivered. In terms of peak power delivery, the primary limitation is the occurrence of bend-induced optical damage to the reflective coating. The damage mechanism and the influential factors are analyzed, in particular, the dependence upon the number of guided modes, core diameter, coating thicknesses, and input polarization alignment.
机译:与具有类似纤芯直径的阶跃折射率光纤相比,由带有内部反射涂层的玻璃毛细管组成的空心纤芯波导能够传递数十毫焦耳的脉冲能量,并且聚焦性得到改善。我们展示了这些光纤在Nd:YAG激光器的基波(1064 nm),二次谐波(532 nm)和三次谐波(355 nm)上提供高功率调Q脉冲的能力,均以峰值功率表示和光束质量。就峰值功率输出而言,主要限制是弯曲引起的光学损伤对反射涂层的影响。分析了损伤机理和影响因素,尤其是对导模数,纤芯直径,涂层厚度和输入偏振取向的依赖性。

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