欢迎登录材料期刊网

材料期刊网

高级检索

描述了掺Cr3+离子的紫翠宝石(Cr3+:BeAl2O4)单晶的晶体结构、物理性质、晶体的吸收光谱与发射光谱及其激光特性.讨论了用引上法生长Cr3+:BeAl2O4晶体的一些工艺问题中.引上法晶体生长过程中选用较慢的提拉速度、较快的转速和生长较大直径的晶体的工艺参数,能够生长出高质量的Cr3+:BeAl2O4单晶体.我们的实验表明,采用温梯法也能生长出高质量的Cr3+:BeAl2O4单晶.与提拉法相比,温梯法减少了原料对环境的污染;易于实现自动温度程序控制;对缺少自然对流的熔体有相当好的适用性.

参考文献

[1] Deville C K;Caron H .Growth of Chrysoberyl in the Presence of Various Mineralizers[J].Compt Rend(Paris),1998,46:760.
[2] Farrell E F et al.Refinement of Chrysoberyl Structure[J].American Mineralogist,1963,48(7-8):804.
[3] Austerman S B .Growth of Beryllia Single Crystals[J].Journal of the American Ceramic Society,1963,46(01):6-10.
[4] Linares R C et al.Growth of Beryl Single Crystals for Microwave Applications[J].Journal of Applied Physics,1962,33(11):3209.
[5] Farrell E F;Fang J H .Flux Growth of Chrysoberyl and Alexandrite[J].Journal of the American Ceramic Society,1964,47:274.
[6] Bukin G V;Matrosov V N .Growth of Alexandrite Crystals and Investigation of Their Properties[J].Journal of Crystal Growth,1981,52:537.
[7] Walling J C;Jenssrn H P;Morris R C et al.Tunable Laser Performance in Alexandrite[J].Optics Letters,1979,4:182.
[8] Walling J C .High gain laser performance in alexandrite[J].IEEE QE,1980,QE16:1302.
[9] Farrell E F;Fang J H;Newman Rewman R E .Refinement of Chrysoberyl Structure[J].American Mineralogist,1963,48:804.
[10] Powell R C .Spectroscopic properties of alexandrite crystals[J].Physical Review B,1985,32:2788.
[11] Tolsloi N A;刘顺福 .The Spectroscopic properties of alexandrite crystals[J].Opt Spectrosk(USSR O И C),1963,14:25.
[12] 吴光照 .谈谈负吸收条件和激光晶体的探索[J].发光与显示,1980,3:44.
[13] Morris R C;Cline .[P].US:3997853,1976.
[14] 吴光照 .全固态紫翠宝石激光器的实验方案[J].发光与光电子学进展,1997,7:21.
[15] 吴光照.无用灯光的退激发作用及其对激光器贮能的影响[J].中国激光,1992(02):88.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%