Microhardness, laser damage threshold and SHG efficiency studies of potassium dihydrogen phosphate crystals doped with L-arginine amino acid

Potassium dihydrogen phosphate (KDP) single crystals doped with L-arginine (L-arg) amino acid (with a concentration of 0.3 to 1.4 wt. % in the solution) were grown onto a point seed by the temperature reduction method. The effect of L-arg molecules on the strength properties {100} of KDP crystal wer...

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Бібліографічні деталі
Дата:2016
Автори: Kostenyukova, E.I., Bezkrovnaya, O.N., Kolybaeva, M.I., Dolzhenkova, E.F., Kovalenko, N.O., Kanaev, A., Pritula, I.M.
Формат: Стаття
Мова:English
Опубліковано: НТК «Інститут монокристалів» НАН України 2016
Назва видання:Functional Materials
Теми:
Онлайн доступ:http://dspace.nbuv.gov.ua/handle/123456789/119715
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Назва журналу:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Цитувати:Microhardness, laser damage threshold and SHG efficiency studies of potassium dihydrogen phosphate crystals doped with L-arginine amino acid / E.I. Kostenyukova, O.N. Bezkrovnaya, M.I. Kolybaeva, E.F. Dolzhenkova, N.O. Kovalenko, A. Kanaev, I.M. Pritula // Functional Materials. — 2016. — Т. 23, № 1. — С. 27-31. — Бібліогр.: 23 назв. — англ.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
id irk-123456789-119715
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spelling irk-123456789-1197152017-06-09T03:04:16Z Microhardness, laser damage threshold and SHG efficiency studies of potassium dihydrogen phosphate crystals doped with L-arginine amino acid Kostenyukova, E.I. Bezkrovnaya, O.N. Kolybaeva, M.I. Dolzhenkova, E.F. Kovalenko, N.O. Kanaev, A. Pritula, I.M. Characterization and properties Potassium dihydrogen phosphate (KDP) single crystals doped with L-arginine (L-arg) amino acid (with a concentration of 0.3 to 1.4 wt. % in the solution) were grown onto a point seed by the temperature reduction method. The effect of L-arg molecules on the strength properties {100} of KDP crystal were studied. Doping of KDP crystals with L-arg molecules raised the laser damage threshold in comparison with pure KDP in the sector {101}. There were defined the ranges of L-arg concentration where the microhardness and bulk laser damage threshold of KDP:L-arg crystals were higher in the growth sectors as compared with pure KDP. It was found that the efficiency of second harmonic generation in KDP:L-arg (1.4 wt.% of L-arg) exceeded the corresponding characteristic of pure KDP by ~ 2.5 times. 2016 Article Microhardness, laser damage threshold and SHG efficiency studies of potassium dihydrogen phosphate crystals doped with L-arginine amino acid / E.I. Kostenyukova, O.N. Bezkrovnaya, M.I. Kolybaeva, E.F. Dolzhenkova, N.O. Kovalenko, A. Kanaev, I.M. Pritula // Functional Materials. — 2016. — Т. 23, № 1. — С. 27-31. — Бібліогр.: 23 назв. — англ. 1027-5495 DOI: dx.doi.org/10.15407/fm23.01.027 http://dspace.nbuv.gov.ua/handle/123456789/119715 en Functional Materials НТК «Інститут монокристалів» НАН України
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
language English
topic Characterization and properties
Characterization and properties
spellingShingle Characterization and properties
Characterization and properties
Kostenyukova, E.I.
Bezkrovnaya, O.N.
Kolybaeva, M.I.
Dolzhenkova, E.F.
Kovalenko, N.O.
Kanaev, A.
Pritula, I.M.
Microhardness, laser damage threshold and SHG efficiency studies of potassium dihydrogen phosphate crystals doped with L-arginine amino acid
Functional Materials
description Potassium dihydrogen phosphate (KDP) single crystals doped with L-arginine (L-arg) amino acid (with a concentration of 0.3 to 1.4 wt. % in the solution) were grown onto a point seed by the temperature reduction method. The effect of L-arg molecules on the strength properties {100} of KDP crystal were studied. Doping of KDP crystals with L-arg molecules raised the laser damage threshold in comparison with pure KDP in the sector {101}. There were defined the ranges of L-arg concentration where the microhardness and bulk laser damage threshold of KDP:L-arg crystals were higher in the growth sectors as compared with pure KDP. It was found that the efficiency of second harmonic generation in KDP:L-arg (1.4 wt.% of L-arg) exceeded the corresponding characteristic of pure KDP by ~ 2.5 times.
format Article
author Kostenyukova, E.I.
Bezkrovnaya, O.N.
Kolybaeva, M.I.
Dolzhenkova, E.F.
Kovalenko, N.O.
Kanaev, A.
Pritula, I.M.
author_facet Kostenyukova, E.I.
Bezkrovnaya, O.N.
Kolybaeva, M.I.
Dolzhenkova, E.F.
Kovalenko, N.O.
Kanaev, A.
Pritula, I.M.
author_sort Kostenyukova, E.I.
title Microhardness, laser damage threshold and SHG efficiency studies of potassium dihydrogen phosphate crystals doped with L-arginine amino acid
title_short Microhardness, laser damage threshold and SHG efficiency studies of potassium dihydrogen phosphate crystals doped with L-arginine amino acid
title_full Microhardness, laser damage threshold and SHG efficiency studies of potassium dihydrogen phosphate crystals doped with L-arginine amino acid
title_fullStr Microhardness, laser damage threshold and SHG efficiency studies of potassium dihydrogen phosphate crystals doped with L-arginine amino acid
title_full_unstemmed Microhardness, laser damage threshold and SHG efficiency studies of potassium dihydrogen phosphate crystals doped with L-arginine amino acid
title_sort microhardness, laser damage threshold and shg efficiency studies of potassium dihydrogen phosphate crystals doped with l-arginine amino acid
publisher НТК «Інститут монокристалів» НАН України
publishDate 2016
topic_facet Characterization and properties
url http://dspace.nbuv.gov.ua/handle/123456789/119715
citation_txt Microhardness, laser damage threshold and SHG efficiency studies of potassium dihydrogen phosphate crystals doped with L-arginine amino acid / E.I. Kostenyukova, O.N. Bezkrovnaya, M.I. Kolybaeva, E.F. Dolzhenkova, N.O. Kovalenko, A. Kanaev, I.M. Pritula // Functional Materials. — 2016. — Т. 23, № 1. — С. 27-31. — Бібліогр.: 23 назв. — англ.
series Functional Materials
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first_indexed 2023-10-18T20:35:18Z
last_indexed 2023-10-18T20:35:18Z
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