期刊文献+

Growth,Structure,and Spectroscopic Characteristics of the Nd^(3+):LiGd(WO_4)_2 Crystal 被引量:1

Growth,Structure,and Spectroscopic Characteristics of the Nd^(3+):LiGd(WO_4)_2 Crystal
下载PDF
导出
摘要 The Nd^3+:LiGd(WO4) 2 crystal with dimensions of 25mm×28mm×16mm was grown by the top-seeded solution growth method from the 60 mol% Li2W2O7 flux. LiGd(WO4) 2 crystallizes in the tetragonal system with space group I41/a(C4h^6) and cell parameters: a = 5.1986 and c = 11.2652A. The hardness is about 5.0 Mohs' scale. The specific heat is 0.40 J·g^-1·K^-1 at 50 oC. The thermal expansion coefficients for a-and c-axes are 1.314×10^-5 and 2.052×10^-5 K^-1,respectively. The room-temperature polarized absorption and emission spectra and the fluorescence decay curve was measured. The parameters of oscillator strengths,the spontaneous transition probabilities,the fluorescence branching ratios,the radiative lifetimes,and the emission cross sections have been investigated based on Judd-Ofelt theory and Füchtbauer-Ladenburg method. The absorption cross-section is 5.19×10^-20 cm^2 at 805 nm for π-polarization and its line width is 15 nm; the emission cross section is 1.726×10^-19 cm^2 at 1060.5 nm for π-polarization. The fluorescence and radiative lifetimes are 86 and 158 μs,respectively. The fluorescence quantum efficiency is 54.43%. The Nd^3+:LiGd(WO4) 2 crystal with dimensions of 25mm×28mm×16mm was grown by the top-seeded solution growth method from the 60 mol% Li2W2O7 flux. LiGd(WO4) 2 crystallizes in the tetragonal system with space group I41/a(C4h^6) and cell parameters: a = 5.1986 and c = 11.2652A. The hardness is about 5.0 Mohs' scale. The specific heat is 0.40 J·g^-1·K^-1 at 50 oC. The thermal expansion coefficients for a-and c-axes are 1.314×10^-5 and 2.052×10^-5 K^-1,respectively. The room-temperature polarized absorption and emission spectra and the fluorescence decay curve was measured. The parameters of oscillator strengths,the spontaneous transition probabilities,the fluorescence branching ratios,the radiative lifetimes,and the emission cross sections have been investigated based on Judd-Ofelt theory and Füchtbauer-Ladenburg method. The absorption cross-section is 5.19×10^-20 cm^2 at 805 nm for π-polarization and its line width is 15 nm; the emission cross section is 1.726×10^-19 cm^2 at 1060.5 nm for π-polarization. The fluorescence and radiative lifetimes are 86 and 158 μs,respectively. The fluorescence quantum efficiency is 54.43%.
出处 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2011年第1期85-96,共12页 结构化学(英文)
基金 Supported by the National Natural Science Foundation of China (No.60808033) Natural Science Foundation of Jiangxi Province (No.2008GZW0012)
关键词 optical microscopy growth from melt Nd^3+:LiGd(WO4)2 crystal solid state laser materials optical microscopy,growth from melt,Nd^3+:LiGd(WO4)2 crystal,solid state laser materials
  • 相关文献

参考文献36

  • 1Zharikov, E. V.; Zaldo, C.; Diaz, F. MRS Bull. 2009, 34, 271-276.
  • 2Petrov, V.; Rico, M.; Liu, J.; Griebner, U.; Mateos, X.; Cano-Torres, J. M.; Volkov, V.; Esteban-Beteg6n, F.; Serrano, M. D.; Hart, X. M.; Zaldo, C. or. Non-Cryst. Solids 2006, 352, 2371-2375.
  • 3Pollnau, M.; Romanyuk, Y. E.; Gardillou, F.; Borca, C. N.; Griebner, U.; Rivier, S.; Petrov, V. IEEE J. Selected Topics Quantum Electon. 2007, 13, 661-671.
  • 4Wang, G. J.; Han, X. M.; Long, X. F.; Wang, G. F. Chinese J. Struet. Chem. B 2006, 25, 192-196.
  • 5Kaminskii, A. A.; Eichler, H. J.; Ue.Ma, K.; Klasscn, N. V.; Redkin, B. S.; Li, L. E.; Findeisen, J.; Jaque, D.; Oarcia-Sole, J.; Fernandez, J.; Balda, R. Appl. Opt. 1999, 38, 4533-4547.
  • 6Tang, L. Y.; Wang, G. F. Chinese.J. Struct. Chem. B 2005, 24, 383-386.
  • 7Garcia-Cortes, A.; Cascales, C.; De Andres, A.; Zaldo, C.; Zharikov, E. V.; Subbotin, K. A.; Bjurshagcn, S.; Pasiskevicius, V.; Rico, M. IEEE J. Quantum Electron. 2007, 43, 157-167.
  • 8Huang, X. Y.; Lin, Z. B.; Zhang, L. Z.; Huang, J. S.; Wang, G. F. J. Cryst. Growth 2004, 269, 401-407.
  • 9Mcndez-Blas, A.; Rico, M.; Volkov, V.; Zaldo, C.; Cascalcs, C. Mol. Phys. 2003, 101,941-949.
  • 10Huang, X. Y.; Wang, G. F.; Li, X. X.; Yu, Q. M.; Lu, X. D. Opt. Mater. 2009, 32, 69-74.

引证文献1

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部