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MRF Applications: On the Road to Making Large-Aperture Ultraviolet Laser Resistant Continuous Phase Plates for High-Power Lasers

机译:MRF应用:正在为大功率激光器制造大孔径抗紫外线激光连续相板

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Over the past two years we have developed MRF tools and procedures to manufacture large-aperture (430 X 430 mm) continuous phase plates (CPPs) that are capable of operating in the infrared portion (1053 nm) of high-power laser systems. This is accomplished by polishing prescribed patterns of continuously varying topographical features onto finished piano optics using MRF imprinting techniques. We have been successful in making, testing, and using large-aperture CPPs whose topography possesses spatial periods as low as 4 mm and surface peak-to-valleys as high as 8.6 μm. Combining this application of MRF technology with advanced MRF finishing techniques that focus on ultraviolet laser damage resistance makes it potentially feasible to manufacture large-aperture CPPs that can operate in the ultraviolet (351 nm) without sustaining laser-induced damage. In this paper, we will discuss the CPP manufacturing process and the results of 351-nm/3-nsec equivalent laser performance experiments conducted on large-aperture CPPs manufactured using advanced MRF protocols.
机译:在过去的两年中,我们开发了MRF工具和程序来制造大孔径(430 X 430 mm)连续相板(CPP),这些相板能够在大功率激光系统的红外部分(1053 nm)中工作。这是通过使用MRF压印技术将连续变化的地形特征的指定图案抛光到成品钢琴光学器件上而实现的。我们已经成功地制造,测试和使用了大口径CPP,这些CPP的形貌具有低至4 mm的空间周期和高至8.6μm的表面峰谷。将MRF技术的这种应用与专注于抗紫外线激光损坏的先进MRF精加工技术相结合,可以制造出可以在紫外线(351 nm)下工作而不会承受激光引起的损坏的大口径CPP。在本文中,我们将讨论CPP的制造过程以及在使用先进MRF协议制造的大口径CPP上进行的351 nm / 3 ns等效激光性能实验的结果。

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