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High performance fluoride optical coatings for DUV optics

机译:用于DUV光学器件的高性能氟化物光学涂料

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In deep ultraviolet region that typical applications are used on the ArF wavelength, coated optics should meet stringent requirements of optical systems. To meet these requirements, systematical researches are carried out on fabrication and characterization methods of fluoride coatings. First, by optimizing of deposition processes, dense coatings with the refractive index of ~1.7 for LaF_3 and ~1.4 for MgF_2, together with extinction coefficients of ~2×10~(-4) on 193nm were realized. The transmission of AR coating for 193nm achieved by using optimized deposition techniques is 99.8%. Second, a method of designing shadowing masks was developed to solve the problem of correcting coating thickness distributions for complex DUV systems. By using the method, the thickness distribution error specification of 3% PV has been achieved on substrates with ~300mm diameters and large curvatures. Finally, the laser calorimetry method is used to evaluate the laser radiation stability of fluoride coatings. It is turned out that the damage coefficients of fluoride coatings, which are defined as the values of unrecoverable increase of the absorption during the laser irradiation process, are much lower than that of fused silica substrates. The above progresses could further support the realization of high performance DUV optical systems.
机译:在ArF波长使用典型应用的深紫外区域,镀膜光学器件应满足光学系统的严格要求。为了满足这些要求,对氟化物涂层的制备和表征方法进行了系统的研究。首先,通过优化沉积工艺,实现了在LaF_3上折射率约为1.7,MgF_2折射率约为1.4的致密涂层,在193nm处的消光系数约为2×10〜(-4)。通过使用优化的沉积技术,AR涂层在193nm处的透射率为99.8%。其次,开发了一种设计荫罩的方法来解决校正复杂DUV系统的涂层厚度分布的问题。通过使用该方法,已在直径约为300mm且曲率较大的基板上实现了3%PV的厚度分布误差指标。最后,采用激光量热法对氟化物涂层的激光辐射稳定性进行了评估。事实证明,氟化物涂层的损伤系数(定义为在激光辐照过程中无法恢复的吸收增加值)远低于熔融石英基底。上述进展可以进一步支持高性能DUV光学系统的实现。

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