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Laser damage resistant anti-reflection microstructures in Raytheon ceramic YAG, sapphire, ALON, and quartz

机译:雷神陶瓷YAG,蓝宝石,ALON和石英中的抗激光损伤的抗反射微结构

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A study of the laser induced damage threshold (LiDT) of anti-reflection (AR) microstructures (ARMs) built in the end facets of metal ion doped yttrium aluminum garnet (YAG) laser gain material, has been conducted. Test samples of undoped and ytterbium-doped polycrystalline YAG produced by Raytheon Company were processed with ARMs in one surface and subjected to standardized pulsed LiDT testing at the near-infrared (NIR) wavelength of 1064nm. As received YAG samples with a simple commercial polish were also submitted to the damage tests for comparison, along with YAG samples that were treated with a single layer thin-film AR coating designed for maximum transmission at 1064nm. Additional samples of single crystal sapphire and quartz, and polycrystalline ALONTM windows were prepared with thin-film AR coatings and ARMs textures to expand the 1064nm laser damage testing to other important NIR transmitting materials. It was found that the pulsed laser damage resistance of ARMs textured ceramic YAG windows is 11 J/cm2, a value that is 43% higher than untreated ceramic YAG windows, suggesting that ARMs fabrication removed residual sub-surface damage, a factor that has been shown to be important for increasing the damage resistance of an optic. This conclusion is also supported by the high damage threshold values found with the single layer AR coatings on ceramic YAG where the coatings may have shielded the sub-surface polishing damage. Testing results for the highly polished sapphire windows also support the notion that better surface preparation produces higher damage resistance. The damage threshold for untreated sapphire windows exceeded 32 J/cm2 for one sample with an average of 27.5 J/cm2 for the two samples tested. The ARMs-treated sapphire windows had similar damage thresholds as the untreated material, averaging 24.9 J/cm2, a value 1.5 to 2 times higher than the damage threshold of the thin film AR coated sapphire windows
机译:对掺入金属离子的钇铝石榴石(YAG)激光增益材料端面中的抗反射(AR)微结构(ARM)的激光诱导损伤阈值(LiDT)进行了研究。将雷声公司生产的未掺杂和掺-的多晶YAG的测试样品在一个表面上用ARM进行处理,并在1064nm的近红外(NIR)波长下进行标准化脉冲LiDT测试。收到的带有简单商品抛光剂的YAG样品,以及经过单层薄膜AR涂层处理的YAG样品,都经过了设计,以便在1064nm处实现最大透射率,以进行比较。还准备了带有薄膜AR涂层和ARM纹理的单晶蓝宝石和石英以及多晶ALONTM窗口的其他样品,以将1064nm激光损伤测试扩展到其他重要的近红外透射材料。发现ARM织纹陶瓷YAG窗的脉冲激光抗损伤性为11 J / cm2,该值比未处理的陶瓷YAG窗高43%,这表明ARM的制造消除了残余的亚表面损伤,这是证明对提高光学元件的抗损伤性很重要。在陶瓷YAG上的单层AR涂层中发现的高损伤阈值也证明了这一结论,其中该涂层可能已经屏蔽了亚表面抛光损伤。高度抛光的蓝宝石窗户的测试结果也支持这样的观点,即更好的表面处理可以产生更高的抗损伤性。对于一个样品,未经处理的蓝宝石窗口的损伤阈值超过32 J / cm2,对于两个测试样品,其平均损伤值为27.5 J / cm2。经ARMs处理的蓝宝石窗口与未经处理的材料具有相似的损伤阈值,平均为24.9 J / cm2,该值比薄膜AR涂层蓝宝石窗口的损伤阈值高1.5至2倍

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