Bulk crystal growth and thermal, spectroscopic and laser properties of disordered Melilite Nd:Ca2Ga2SiO7 single crystal

A large sized Nd-doped Ca2Ga2SiO7 single crystal was successfully grown by the Czochralski technique. The effective segregation coefficient of Nd3+ was measured to be 1.16. The thermal, spectroscopic and laser properties were systematically investigated. The thermal conductivity was found to increas...

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Veröffentlicht in:Journal of alloys and compounds 2017-12, Vol.727, p.8-13
Hauptverfasser: Shen, Chuanying, Wang, Duanliang, Xu, Honghao, Pan, Zhongben, Zhang, Huaijin, Wang, Jiyang, Boughton, Robert I.
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container_end_page 13
container_issue
container_start_page 8
container_title Journal of alloys and compounds
container_volume 727
creator Shen, Chuanying
Wang, Duanliang
Xu, Honghao
Pan, Zhongben
Zhang, Huaijin
Wang, Jiyang
Boughton, Robert I.
description A large sized Nd-doped Ca2Ga2SiO7 single crystal was successfully grown by the Czochralski technique. The effective segregation coefficient of Nd3+ was measured to be 1.16. The thermal, spectroscopic and laser properties were systematically investigated. The thermal conductivity was found to increase with increasing temperature, exhibiting glass or alloy like behavior, and is inherently associated with the disordered structure of the Ca2Ga2SiO7 crystal. The polarized absorption and fluorescence spectra were measured at room temperature, and the spectrum parameters were calculated using the Judd-Ofelt theory. Furthermore, continuous wave laser operation at 1.06 μm along the crystallographic a- and c-axes was demonstrated. A laser output power of 430 mW with an optical conversion efficiency of 14.2% and a slope efficiency of 16.7% was achieved. These results show that Nd:Ca2Ga2SiO7 holds excellent promise for use as a disordered crystalline laser material. •A large sized Nd:Ca2Ga2SiO7 single crystal was grown by Czochralski technique.•The thermal, spectra properties and spectra parameters were investigated.•CW laser operations were demonstrated, with a power of 430 mW obtained.
doi_str_mv 10.1016/j.jallcom.2017.07.217
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source ScienceDirect Journals (5 years ago - present)
subjects Calcium compounds
Continuous wave lasers
Crystal growth
Crystal structure
Crystallography
Czochralski method
Disordered structure
Energy conversion efficiency
Fluorescence
Judd-Ofelt theory
Laser properties
Lasers
Mathematical analysis
Nd:Ca2Ga2SiO7
Neodymium
Single crystals
Spectroscopic properties
Spectrum analysis
Theory
Thermal conductivity
title Bulk crystal growth and thermal, spectroscopic and laser properties of disordered Melilite Nd:Ca2Ga2SiO7 single crystal
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