Analysis of output surface damage resulting from single 351 nm, 3 ns pulses on sub-nanosecond laser conditioned KD2PO4 crystals

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We observe that by conditioning DKDP using 500 ps laser pulses, the bulk damage threshold becomes essentially equivalent to the surface damage threshold. We report here the findings of our study of laser initiated output surface damage on 500 ps laser conditioned DKDP for test pulses at 351 nm, 3 ns. The relation between surface damage density and damaging fluence (r(f)) is presented for the first time and the morphologies of the surface sites are discussed. The results of this study suggest a surface conditioning effect resulting from exposure to 500 ps laser pulses.

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Jarboe, J; Adams, J J & Hackel, R October 31, 2007.

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We observe that by conditioning DKDP using 500 ps laser pulses, the bulk damage threshold becomes essentially equivalent to the surface damage threshold. We report here the findings of our study of laser initiated output surface damage on 500 ps laser conditioned DKDP for test pulses at 351 nm, 3 ns. The relation between surface damage density and damaging fluence (r(f)) is presented for the first time and the morphologies of the surface sites are discussed. The results of this study suggest a surface conditioning effect resulting from exposure to 500 ps laser pulses.

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PDF-file: 14 pages; size: 5 Mbytes

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  • Presented at: SPIE - Boulder Damage Symposium, Boulder, CO, United States, Sep 24 - Sep 26, 2007

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  • Report No.: UCRL-PROC-236273
  • Grant Number: W-7405-ENG-48
  • Office of Scientific & Technical Information Report Number: 923099
  • Archival Resource Key: ark:/67531/metadc902405

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  • October 31, 2007

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  • Sept. 27, 2016, 1:39 a.m.

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  • Dec. 9, 2016, 3:18 p.m.

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Jarboe, J; Adams, J J & Hackel, R. Analysis of output surface damage resulting from single 351 nm, 3 ns pulses on sub-nanosecond laser conditioned KD2PO4 crystals, article, October 31, 2007; Livermore, California. (digital.library.unt.edu/ark:/67531/metadc902405/: accessed December 16, 2018), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT Libraries Government Documents Department.