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首页> 外文期刊>International Journal of Polymer Science >The Transmittance, Transmittance Wavefront, and Laser Induced Damage Properties of Thin Fluoride Polymer Films May Be Used as Short Pulse Laser Debris Shields
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The Transmittance, Transmittance Wavefront, and Laser Induced Damage Properties of Thin Fluoride Polymer Films May Be Used as Short Pulse Laser Debris Shields

机译:氟化物聚合物薄膜的透射率,透射率波前和激光诱导的损伤特性可用作短脉冲激光碎屑屏蔽

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Debris mitigation which pollutes and even damages the optical elements is a major challenge for all high-peak-power lasers system. In order to solve the problem, we employed some preliminary research. In this work, first, the film optical properties of fluorinated ethylene propylene (FEP), perfluoroalkoxy copolymer (PFA), and ethane-tetrafluoroethylene copolymer (ETFE) were investigated with respect to their possible application as laser debris shields. The results indicate that three of the polymer films have high transmittance at 355 nm, especially in FEP film, the transmittance of which at 355 nm is near to 94%. The transmittance wavefront and the laser that induce damage of FEP film were investigated further. The result indicates that the wavefront error of FEP film (with a diameter of 90 mm) is about 0.33A. The damage test was performed by a 355 nm neodymium:yttrium aluminum garnet (Nd:YAG) laser with a 9.3 ns pulse duration, and it was found that the highest nondamage fluence for FEP film is 10.35 J/cm~2. Through a demonstration experiment, it was testified that the FEP film can prevent large amount of metal fractions and the FEP film can be used as the debris shields indeed.
机译:减轻污染甚至损害光学元件的碎屑是所有高峰值功率激光系统的主要挑战。为了解决该问题,我们进行了一些初步研究。在这项工作中,首先,研究了氟化乙烯丙烯(FEP),全氟烷氧基共聚物(PFA)和乙烷-四氟乙烯共聚物(ETFE)的薄膜光学性能,以探讨它们可能用作激光碎屑防护罩。结果表明,三种聚合物膜在355 nm处具有较高的透射率,尤其是在FEP膜中,其在355 nm处的透射率接近94%。进一步研究了透射光波前和引起FEP膜损伤的激光。结果表明,直径为90 mm的FEP膜的波前误差约为0.33A。用355纳米钕钇铝石榴石(Nd:YAG)激光器以9.3 ns的脉冲持续时间进行损伤测试,发现FEP膜的最高无损伤通量为10.35 J / cm〜2。通过演示实验,证明了FEP膜可以防止大量的金属碎片,并且FEP膜确实可以用作碎屑防护罩。

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