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Spectroscopic study of thulium doped transparent glass ceramics

Spectroscopic study of thulium doped transparent glass ceramics
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摘要 A systematic investigation on fluorescence spectroscopy of trivalent thulium doped in oxyfluoride glass ceramics containing LaF3 nanocrystals has been carried out in a spectral range from 400 to 900 nm under the direct excitation of 1D2 level at a low temperature. Specific optical transitions related to the fluorescence emissions are studied based on experimental measurements in frequency and time domain. Fluorescence emissions from the ions in crystal phase are distinguished from what in glass phase and their spectroscopic properties are explored. The dynamical process shows that the temporal decay of fluorescence emission consists of two parts: a rapid decay from the ions in glass phase and a slower decay from the ions in crystal phase. A systematic investigation on fluorescence spectroscopy of trivalent thulium doped in oxyfluoride glass ceramics containing LaF3 nanocrystals has been carried out in a spectral range from 400 to 900 nm under the direct excitation of 1D2 level at a low temperature. Specific optical transitions related to the fluorescence emissions are studied based on experimental measurements in frequency and time domain. Fluorescence emissions from the ions in crystal phase are distinguished from what in glass phase and their spectroscopic properties are explored. The dynamical process shows that the temporal decay of fluorescence emission consists of two parts: a rapid decay from the ions in glass phase and a slower decay from the ions in crystal phase.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第11期4328-4332,共5页 中国物理B(英文版)
基金 Project supported by the Foundation for Key Program of Ministry of Education, China (Grant No 108118)
关键词 trivalent thulium transparent oxyfluoride glass ceramics optical transition trivalent thulium, transparent oxyfluoride glass ceramics, optical transition
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  • 1Wang Y and Ohwaki J 1993 Appl. Phys. Lett. 63 3268
  • 2Tick P A, Borrelli N F, Cornelius L K and Newhouse M A 1995 J. Appl. Phys. 78 6367
  • 3Dejneka M J 1998 J. Non-Cryst. Solids 239 149
  • 4Goncalves M C, Santos L F and Almeida R M 2002 C. R. Chimie 5 845
  • 5Huang S H, Lai S T, Lou L R, Jia W Y and Yen W M 1981 Phys. Rev. B 24 59
  • 6Chen X Y and Luo Z D 1998 Chin. Phys. 7 773
  • 7Duan Z C, Zhang J J, He D B, Dai S X and Hu L L 2006 Chin. Phys. 15 209
  • 8Ellens A, Schenker S, Meijerink A and Blasse G 1996 J. Lumin. 69 1
  • 9Carnall W T, Fields P R, Morrision J and Sarup R 1970 J. Chem. Phys. 52 4054
  • 10Jerez V A and de Araujo C B 2004 J. Appl. Phys. 96 2530

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