Performance characterization of freeform finished surfaces of potassium dihydrogen phosphate using fluid jet polishing with a nonaqueous slurry

被引:5
|
作者
Urban, Nathaniel D. D. [1 ]
Kafka, Kyle R. P. [1 ]
Jang, Ji-Mi [1 ]
Hoffman, Brittany N. N. [1 ]
Marshall, Kenneth L. L. [1 ]
Emms, Rhys [2 ]
Walker, David [2 ]
Demos, Stavros G. G. [1 ]
机构
[1] Univ Rochester, Lab Laser Energet, 250 East River Rd, Rochester, NY 14623 USA
[2] LightMachinery Inc, 80 Colonnade Rd 1, Nepean, ON K2E 7L2, Canada
关键词
INDUCED DAMAGE RESISTANCE; MATERIAL REMOVAL; KDP; CRYSTALS; GROWTH; OPTICS; KH2PO4;
D O I
10.1038/s41598-023-33695-x
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Potassium dihydrogen phosphate (KDP) and its deuterated analog (DKDP) are unique nonlinear optical materials for high power laser systems. They are used widely for frequency conversion and polarization control by virtue of the ability to grow optical-quality crystals at apertures suitable for fusion-class laser systems. Existing methods for freeform figuring of KDP/DKDP optics do not produce surfaces with sufficient laser-induced-damage thresholds (LIDT's) for operation in the ultraviolet portion of high-peak-power laser systems. In this work, we investigate fluid jet polishing (FJP) using a nonaqueous slurry as a sub-aperture finishing method for producing freeform KDP surfaces. This method was used to selectively polish surface areas to different depths on the same substrate with removals ranging from 0.16 mu m to 5.13 mu m. The finished surfaces demonstrated a slight increase in roughness as the removal depth increased along with a small number of fracture pits. Laser damage testing with 351 nm, 1 ns pulses demonstrated excellent surface damage thresholds, with the highest values in areas devoid of fracture pits. This work demonstrates, for the first time, a method that enables fabrication of a waveplate that provides tailored polarization randomization that can be scaled to meter-sized optics. Furthermore, this method is based on FJP technology that incorporates a nonaqueous slurry specially designed for use with KDP. This novel nonaqueous FJP process can be also used for figuring other types of materials that exhibit similar challenging inherent properties such as softness, brittleness, water-solubility, and temperature sensitivity.
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页数:9
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