Depletion of high-energy carriers in YAG optical ceramic materials

被引:20
|
作者
Zych, E
Brecher, C
Lingertat, H
机构
[1] Boston Univ, Dept Chem, Boston, MA 02215 USA
[2] Univ Wroclaw, Fac Chem, PL-50138 Wroclaw, Poland
关键词
YAG; scintillation; ceramics;
D O I
10.1016/S1386-1425(98)00110-3
中图分类号
O433 [光谱学];
学科分类号
0703 ; 070302 ;
摘要
The scintillation properties of YAG:Ce transparent ceramic material prepared by a hot-pressing technique have been characterized and compared with those of a chemically identical specimen of single crystal. Each of the scintillation steps (conversion, energy transfer and luminescence) has been selectively investigated using appropriate spectroscopic techniques. The light output from the ceramic specimen was measured at approximate to 1500 photons/MeV, only 10% of that from the single crystal. This drastic decrease in the ceramic reflects the inefficient transfer of energy from the excited host to the Ce ion. The inefficiency can be attributed to the presence in the ceramic material of a high population of lattice defects, as demonstrated by the UV absorption spectra. Thermoluminescence experiments show that these defects can serve as sinks for free carriers (electrons and holes), providing sites for their nonradiative recombination and preventing them from conveying their energy to the emitting centers. (C) 1998 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:1771 / 1777
页数:7
相关论文
共 50 条
  • [1] Towards high-quality optical ceramic YAG fibers for High-Energy Laser (HEL) applications
    Lee, HeeDong
    Keller, Kristin
    Sirn, Brian
    LASER TECHNOLOGY FOR DEFENSE AND SECURITY VIII, 2012, 8381
  • [2] High-energy ultrafine metal powders in the manufacture of ceramic materials
    T. A. Khabas
    Glass and Ceramics, 1997, 54 : 361 - 364
  • [3] High-energy ultrafine metal powders in the manufacture of ceramic materials
    Khabas, TA
    GLASS AND CERAMICS, 1997, 54 (11-12) : 361 - 364
  • [4] High-energy, stable single-frequency Ho:YAG ceramic amplifier system
    Zhang, Yixuan
    Gao, Chunqing
    Wang, Qing
    Na, Quanxin
    Gao, Mingwei
    Zhang, Meng
    Ye, Qing
    Wang, Yujia
    Zhang, Jian
    APPLIED OPTICS, 2017, 56 (34) : 9531 - 9535
  • [5] High-Energy Nanosecond Optical Vortex Output From Nd:YAG Amplifiers
    Chen, Xudong
    Chang, Chengcheng
    Lin, Zhili
    Ding, Panfeng
    Pu, Jixiong
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2016, 28 (12) : 1271 - 1274
  • [6] High-energy LDA switched side-pumped electro-optical Q-switched Nd:YAG ceramic laser
    Qi, Yunfeng
    Zhu, Xiaolei
    Lou, Qihong
    Ji, Jianghua
    Dong, Jingxing
    Wei, Runrong
    JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2007, 24 (05) : 1042 - 1045
  • [7] Progress in synthesis of ferroelectric ceramic materials via high-energy mechanochemical technique
    Kong, L. B.
    Zhang, T. S.
    Ma, J.
    Boey, F.
    PROGRESS IN MATERIALS SCIENCE, 2008, 53 (02) : 207 - 322
  • [8] A high-energy YAG: Nd3+ laser with a phase conjugation in an optical fiber
    S. A. Batishche
    A. A. Kouzmouk
    G. A. Tatur
    Instruments and Experimental Techniques, 2011, 54 : 114 - 117
  • [9] A high-energy YAG:Nd3+ laser with a phase conjugation in an optical fiber
    Batishche, S. A.
    Kouzmouk, A. A.
    Tatur, G. A.
    INSTRUMENTS AND EXPERIMENTAL TECHNIQUES, 2011, 54 (01) : 114 - 117
  • [10] Optical detection of combustion zone movement in solid high-energy materials
    M. Miszczak
    W. Swiderski
    Combustion, Explosion, and Shock Waves, 2014, 50 : 178 - 182