Reactive sintering of highly-doped YAG/Nd3+ :YAG/YAG composite ceramics
Multilayer YAG/Nd3+:YAG/YAG composite laser ceramics were obtained by the reactive sintering in vacuum. The effect of the neodymium ion concentration (1–4 at.%) on the formation of defects and optical quality of composite ceramics was studied. It was found that neodymium ions modify densification ki...
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University of Novi Sad
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doaj-b3bbf3306ca74d8e9082034f928db80c2020-11-25T02:47:32ZengUniversity of Novi SadProcessing and Application of Ceramics1820-61312406-10342017-12-0111429029510.2298/PAC1704290VReactive sintering of highly-doped YAG/Nd3+ :YAG/YAG composite ceramicsIhor O. Vorona0Roman P. Yavetskiy1Andrey G. Doroshenko2Sergey V. Parkhomenko3Ekaterina G. Chernomorets4Alexander V. Tolmachev5Sergey V. Frolov6Viktor B. Taranenko7Ruslan A. Limarenko8Denis Yu. Kosyanov9 Institute for Single Crystals of NAS of Ukraine, 60 Nauky Ave., Kharkiv 61072, Ukraine Institute for Single Crystals of NAS of Ukraine, 60 Nauky Ave., Kharkiv 61072, Ukraine Institute for Single Crystals of NAS of Ukraine, 60 Nauky Ave., Kharkiv 61072, Ukraine Institute for Single Crystals of NAS of Ukraine, 60 Nauky Ave., Kharkiv 61072, Ukraine Institute for Single Crystals of NAS of Ukraine, 60 Nauky Ave., Kharkiv 61072, Ukraine Institute for Single Crystals of NAS of Ukraine, 60 Nauky Ave., Kharkiv 61072, UkraineInternational Center “Institute of Applied Optics”, NAS of Ukraine, 10-G Kudryavska Str., Kyiv 04053, UkraineInternational Center “Institute of Applied Optics”, NAS of Ukraine, 10-G Kudryavska Str., Kyiv 04053, UkraineInternational Center “Institute of Applied Optics”, NAS of Ukraine, 10-G Kudryavska Str., Kyiv 04053, UkraineFar Eastern Federal University, 8 Sukhanova Str., Vladivostok 690950, Russian FederationMultilayer YAG/Nd3+:YAG/YAG composite laser ceramics were obtained by the reactive sintering in vacuum. The effect of the neodymium ion concentration (1–4 at.%) on the formation of defects and optical quality of composite ceramics was studied. It was found that neodymium ions modify densification kinetics during solid-state reactive sintering of the highly-doped Nd3+:YAG ceramics by decreasing shrinkage rate in the temperature range 1320–1350 °C. Differences in phase transformation kinetics during reactive sintering lead to generation of pores at the interface of adjacent layers which decrease the optical homogeneity of fabricated YAG/Nd3+:YAG/YAG composite ceramics. The influence of layered structure on the laser performance of optical ceramics was investigated. It was shown that the ceramics with multilayer composite architecture have slope efficiency almost twice as the single-layer ceramics with the same composition (22% and 12.5%, respectively).http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2038%2007.pdfNd3+ :YAGpressingsinteringmicrostructureoptical propertieslasers |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ihor O. Vorona Roman P. Yavetskiy Andrey G. Doroshenko Sergey V. Parkhomenko Ekaterina G. Chernomorets Alexander V. Tolmachev Sergey V. Frolov Viktor B. Taranenko Ruslan A. Limarenko Denis Yu. Kosyanov |
spellingShingle |
Ihor O. Vorona Roman P. Yavetskiy Andrey G. Doroshenko Sergey V. Parkhomenko Ekaterina G. Chernomorets Alexander V. Tolmachev Sergey V. Frolov Viktor B. Taranenko Ruslan A. Limarenko Denis Yu. Kosyanov Reactive sintering of highly-doped YAG/Nd3+ :YAG/YAG composite ceramics Processing and Application of Ceramics Nd3+ :YAG pressing sintering microstructure optical properties lasers |
author_facet |
Ihor O. Vorona Roman P. Yavetskiy Andrey G. Doroshenko Sergey V. Parkhomenko Ekaterina G. Chernomorets Alexander V. Tolmachev Sergey V. Frolov Viktor B. Taranenko Ruslan A. Limarenko Denis Yu. Kosyanov |
author_sort |
Ihor O. Vorona |
title |
Reactive sintering of highly-doped YAG/Nd3+ :YAG/YAG composite ceramics |
title_short |
Reactive sintering of highly-doped YAG/Nd3+ :YAG/YAG composite ceramics |
title_full |
Reactive sintering of highly-doped YAG/Nd3+ :YAG/YAG composite ceramics |
title_fullStr |
Reactive sintering of highly-doped YAG/Nd3+ :YAG/YAG composite ceramics |
title_full_unstemmed |
Reactive sintering of highly-doped YAG/Nd3+ :YAG/YAG composite ceramics |
title_sort |
reactive sintering of highly-doped yag/nd3+ :yag/yag composite ceramics |
publisher |
University of Novi Sad |
series |
Processing and Application of Ceramics |
issn |
1820-6131 2406-1034 |
publishDate |
2017-12-01 |
description |
Multilayer YAG/Nd3+:YAG/YAG composite laser ceramics were obtained by the reactive sintering in vacuum. The effect of the neodymium ion concentration (1–4 at.%) on the formation of defects and optical quality of composite ceramics was studied. It was found that neodymium ions modify densification kinetics during solid-state reactive sintering of the highly-doped Nd3+:YAG ceramics by decreasing shrinkage rate in the temperature range 1320–1350 °C. Differences in phase transformation kinetics during reactive sintering lead to generation of pores at the interface of adjacent layers which decrease the optical homogeneity of fabricated YAG/Nd3+:YAG/YAG composite ceramics. The influence of layered structure on the laser performance of optical ceramics was investigated. It was shown that the ceramics with multilayer composite architecture have slope efficiency almost twice as the single-layer ceramics with the same composition (22% and 12.5%, respectively). |
topic |
Nd3+ :YAG pressing sintering microstructure optical properties lasers |
url |
http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2038%2007.pdf |
work_keys_str_mv |
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