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The Anisotropic Thermal Expansion of Non-linear Optical Crystal BaAlBO(3)F(2) Below Room Temperature

Thermal expansion is a crucial factor for the performance of laser devices, since the induced thermal stress by laser irradiation would strongly affect the optical beam quality. For BaAlBO(3)F(2) (BABF), a good non-linear optical (NLO) crystal, due to the highly anisotropic thermal expansion its pra...

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Autores principales: Jiang, Xingxing, Wang, Naizheng, Molokeev, Maxim S., Wang, Wei, Guo, Shibin, Huang, Rongjin, Li, Laifeng, Hu, Zhanggui, Lin, Zheshuai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6033077/
https://www.ncbi.nlm.nih.gov/pubmed/30003077
http://dx.doi.org/10.3389/fchem.2018.00252
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author Jiang, Xingxing
Wang, Naizheng
Molokeev, Maxim S.
Wang, Wei
Guo, Shibin
Huang, Rongjin
Li, Laifeng
Hu, Zhanggui
Lin, Zheshuai
author_facet Jiang, Xingxing
Wang, Naizheng
Molokeev, Maxim S.
Wang, Wei
Guo, Shibin
Huang, Rongjin
Li, Laifeng
Hu, Zhanggui
Lin, Zheshuai
author_sort Jiang, Xingxing
collection PubMed
description Thermal expansion is a crucial factor for the performance of laser devices, since the induced thermal stress by laser irradiation would strongly affect the optical beam quality. For BaAlBO(3)F(2) (BABF), a good non-linear optical (NLO) crystal, due to the highly anisotropic thermal expansion its practical applications are strongly affected by the “tearing” stress with the presence of local overheating area around the laser spot. Recently, the strategy to place the optical crystals in low-temperature environment to alleviate the influence of the thermal effect has been proposed. In order to understand the prospect of BABF for this application, in this work, we investigated its thermal expansion behavior below room temperature. The variable-temperature XRD showed that the ratio of thermal expansion coefficient between along c- and along a(b)- axis is high as 4.5:1 in BABF. The Raman spectrum combined with first-principles phonon analysis revealed that this high thermal expansion anisotropy mainly ascribe to progressive stimulation of the respective vibration phonon modes related with the thermal expansion along a(b)- and c-axis. The good NLO performance in BABF can be kept below room temperature. The work presented in this paper provides an in-depth sight into the thermal expansion behavior in BABF, which, we believe, would has significant implication to the manipulation in atomic scale on the thermal expansion of the materials adopted in strong-field optical facility.
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spelling pubmed-60330772018-07-12 The Anisotropic Thermal Expansion of Non-linear Optical Crystal BaAlBO(3)F(2) Below Room Temperature Jiang, Xingxing Wang, Naizheng Molokeev, Maxim S. Wang, Wei Guo, Shibin Huang, Rongjin Li, Laifeng Hu, Zhanggui Lin, Zheshuai Front Chem Chemistry Thermal expansion is a crucial factor for the performance of laser devices, since the induced thermal stress by laser irradiation would strongly affect the optical beam quality. For BaAlBO(3)F(2) (BABF), a good non-linear optical (NLO) crystal, due to the highly anisotropic thermal expansion its practical applications are strongly affected by the “tearing” stress with the presence of local overheating area around the laser spot. Recently, the strategy to place the optical crystals in low-temperature environment to alleviate the influence of the thermal effect has been proposed. In order to understand the prospect of BABF for this application, in this work, we investigated its thermal expansion behavior below room temperature. The variable-temperature XRD showed that the ratio of thermal expansion coefficient between along c- and along a(b)- axis is high as 4.5:1 in BABF. The Raman spectrum combined with first-principles phonon analysis revealed that this high thermal expansion anisotropy mainly ascribe to progressive stimulation of the respective vibration phonon modes related with the thermal expansion along a(b)- and c-axis. The good NLO performance in BABF can be kept below room temperature. The work presented in this paper provides an in-depth sight into the thermal expansion behavior in BABF, which, we believe, would has significant implication to the manipulation in atomic scale on the thermal expansion of the materials adopted in strong-field optical facility. Frontiers Media S.A. 2018-06-28 /pmc/articles/PMC6033077/ /pubmed/30003077 http://dx.doi.org/10.3389/fchem.2018.00252 Text en Copyright © 2018 Jiang, Wang, Molokeev, Wang, Guo, Huang, Li, Hu and Lin. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Jiang, Xingxing
Wang, Naizheng
Molokeev, Maxim S.
Wang, Wei
Guo, Shibin
Huang, Rongjin
Li, Laifeng
Hu, Zhanggui
Lin, Zheshuai
The Anisotropic Thermal Expansion of Non-linear Optical Crystal BaAlBO(3)F(2) Below Room Temperature
title The Anisotropic Thermal Expansion of Non-linear Optical Crystal BaAlBO(3)F(2) Below Room Temperature
title_full The Anisotropic Thermal Expansion of Non-linear Optical Crystal BaAlBO(3)F(2) Below Room Temperature
title_fullStr The Anisotropic Thermal Expansion of Non-linear Optical Crystal BaAlBO(3)F(2) Below Room Temperature
title_full_unstemmed The Anisotropic Thermal Expansion of Non-linear Optical Crystal BaAlBO(3)F(2) Below Room Temperature
title_short The Anisotropic Thermal Expansion of Non-linear Optical Crystal BaAlBO(3)F(2) Below Room Temperature
title_sort anisotropic thermal expansion of non-linear optical crystal baalbo(3)f(2) below room temperature
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6033077/
https://www.ncbi.nlm.nih.gov/pubmed/30003077
http://dx.doi.org/10.3389/fchem.2018.00252
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