A Thermal Approach to Model Laser Damage in KDP and DKDP Crystals
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy
Link
https://iopscience.iop.org/article/10.1088/0256-307X/26/9/097803/pdf
Reference14 articles.
1. Developing KH2PO4and KD2PO4crystals for the world's most power laser
2. Improving 351-nm damage performance of large-aperture fused silica and DKDP optics
3. Analysis of bulk DKDP damage distribution, obscuration, and pulse-length dependence
4. A summary of recent damage-initiation experiments on KDP crystals
5. Characteristics of 355 nm Laser Damage in KDP and DKDP Crystals
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1. Hybrid density functional theory calculations for surface damaged phosphate products of laser irradiated KDP crystals;CrystEngComm;2024
2. Preliminary study of the damage resistance of type I doubler KDP crystals at 532 nm;Chinese Optics Letters;2016
3. Electrical Conduction in Deuterated Ammonium Dihydrogen Phosphate Crystals with Different Degrees of Deuteration;Chinese Physics Letters;2015-05
4. Raman Spectra of Deuterated Potassium Dihydrogen Phosphate Crystals with Different Degrees of Deuteration;Chinese Physics Letters;2013-06
5. One-on-One and R-on-One Tests on KDP and DKDP Crystals with Different Orientations;Chinese Physics Letters;2009-08
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