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Growth, crystal structure and spectrum of a novel rare-earth orthophosphate crystal: Yb:LuPO4

Yb: LuPO4 crystals with the size up to 6×2×0.5mm3 were grown by the flux growth process using lead pyrophosphate Pb2P2O7 as the high‐temperature solvent. The crystal structure of Yb: LuPO4 crystals at room temperature was refined by using single crystal X‐ray diffraction data. Crystal structure anal...

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Published in:Crystal research and technology (1979) 2013-06, Vol.48 (6), p.369-373
Main Authors: De-gao, Zhong, Bing, Teng, Li-feng, Cao, Wang, Chao, Lin-xiang, He, Jian-hong, Li, Shi-ming, Zhang, Yu-yi, Li
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container_end_page 373
container_issue 6
container_start_page 369
container_title Crystal research and technology (1979)
container_volume 48
creator De-gao, Zhong
Bing, Teng
Li-feng, Cao
Wang, Chao
Lin-xiang, He
Jian-hong, Li
Shi-ming, Zhang
Yu-yi, Li
description Yb: LuPO4 crystals with the size up to 6×2×0.5mm3 were grown by the flux growth process using lead pyrophosphate Pb2P2O7 as the high‐temperature solvent. The crystal structure of Yb: LuPO4 crystals at room temperature was refined by using single crystal X‐ray diffraction data. Crystal structure analysis showed that Yb: LuPO4 crystals possessed the tetragonal xenotime structure. The polarized absorption spectra of Yb: LuPO4 were tested at room temperature. The results showed that the absorption spectral region of Yb: LuPO4 crystal was well matched for pumping with readily available diode lasers. Yb: LuPO4 crystals with the size up to 6×2×0.5mm3 were grown by the flux growth process using lead pyrophosphate Pb2P2O7 as the high‐temperature solvent. The crystal structure of Yb: LuPO4 crystals at room temperature was refined by using single crystal X‐ray diffraction data. Crystal structure analysis showed that Yb: LuPO4 crystals possessed the tetragonal xenotime structure. The polarized absorption spectra of Yb: LuPO4 were tested at room temperature. The results showed that the absorption spectral region of Yb: LuPO4 crystal was well matched for pumping with readily available diode lasers.
doi_str_mv 10.1002/crat.201300032
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The crystal structure of Yb: LuPO4 crystals at room temperature was refined by using single crystal X‐ray diffraction data. Crystal structure analysis showed that Yb: LuPO4 crystals possessed the tetragonal xenotime structure. The polarized absorption spectra of Yb: LuPO4 were tested at room temperature. The results showed that the absorption spectral region of Yb: LuPO4 crystal was well matched for pumping with readily available diode lasers. Yb: LuPO4 crystals with the size up to 6×2×0.5mm3 were grown by the flux growth process using lead pyrophosphate Pb2P2O7 as the high‐temperature solvent. The crystal structure of Yb: LuPO4 crystals at room temperature was refined by using single crystal X‐ray diffraction data. Crystal structure analysis showed that Yb: LuPO4 crystals possessed the tetragonal xenotime structure. The polarized absorption spectra of Yb: LuPO4 were tested at room temperature. The results showed that the absorption spectral region of Yb: LuPO4 crystal was well matched for pumping with readily available diode lasers.</description><identifier>ISSN: 0232-1300</identifier><identifier>EISSN: 1521-4079</identifier><identifier>DOI: 10.1002/crat.201300032</identifier><language>eng</language><publisher>Blackwell Publishing Ltd</publisher><subject>absorption spectroscopy ; crystal structure ; rare-earth orthophosphate</subject><ispartof>Crystal research and technology (1979), 2013-06, Vol.48 (6), p.369-373</ispartof><rights>2013 WILEY‐VCH Verlag GmbH &amp; Co. 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The crystal structure of Yb: LuPO4 crystals at room temperature was refined by using single crystal X‐ray diffraction data. Crystal structure analysis showed that Yb: LuPO4 crystals possessed the tetragonal xenotime structure. The polarized absorption spectra of Yb: LuPO4 were tested at room temperature. The results showed that the absorption spectral region of Yb: LuPO4 crystal was well matched for pumping with readily available diode lasers. Yb: LuPO4 crystals with the size up to 6×2×0.5mm3 were grown by the flux growth process using lead pyrophosphate Pb2P2O7 as the high‐temperature solvent. The crystal structure of Yb: LuPO4 crystals at room temperature was refined by using single crystal X‐ray diffraction data. Crystal structure analysis showed that Yb: LuPO4 crystals possessed the tetragonal xenotime structure. The polarized absorption spectra of Yb: LuPO4 were tested at room temperature. 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subjects absorption spectroscopy
crystal structure
rare-earth orthophosphate
title Growth, crystal structure and spectrum of a novel rare-earth orthophosphate crystal: Yb:LuPO4
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