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1)  Fluoride ZBLAN glass
氟化物ZBLAN玻璃
2)  ZBLAN glass
ZBLAN玻璃
1.
The absorption spectra of Tm\+\{3+\} :ZBLAN glass was measured and the phenomenological intensity \$Ω\-2?Ω\-4?Ω\-6\$ of Tm\+\{3+\} iron in ZBLAN glass was calculated on the basis of Judd\|Ofelt theory.
测试了 Tm3+离子在 ZBLAN玻璃中的吸收谱 ,根据 Judd- Ofelt[1]理论计算出了该离子在ZBLAN玻璃中的唯象强度参数 Ω2 ,Ω4,Ω6 ,利用这些数值计算出 Tm3+的辐射跃迁几率 AJJ′、振子强度f JJ′、吸收截面σA、荧光寿命τJ等光谱特征参数 ,并对 ZBL AN玻璃作为有源光纤基质的优点做了讨论 。
2.
The Optical absorption of Tm3+ in ZBLAN glass and the fluorescence spectrum of the 116 pumped by 266nm ultraviolet laser have been measured.
测量了Tm3+掺ZBLAN玻璃的吸收谱,确定了Tm3+离子在ZBLAN玻璃中的部分能级位置。
3)  fluoride glass
氟化物玻璃
1.
The phase separation and crystallization of fluoride glass 8.
3ZrF4的氟化物玻璃为对象,研究了玻璃的分相和析晶。
2.
Varying contents of ZrF4 were incorporated into the fluoroaluminate base-glass having a composition of 10MgF2- 20CaF2-10SrF2-BaF2-15YF3-35AlF3(molar percent), contents of other components being adjusted properly, fluoride glasses having no visible crystallization were obtained, these glasses can reach to 8mm thick.
以10MgF_2-20CaF_2-10SrF_2-10BaF_2-15YF_3-35AlF_3(摩尔百分数)氟铝酸盐玻璃为基本组成,在玻璃中引入不同含量的ZrF_4,同时对其它组成进行适当调整,制得了厚度8mm无可见析晶的氟化物玻璃。
3.
Considering Yb3+, -Er3+ energy transfer the basis process,the up-conversion in Yb(3+)/Er(3+) doped fluoride glass is discussed,and the counter-motion has been taken into account.
讨论了掺Yb(3+)/Er(3+)氟化物玻璃的上转换机制,认为Yb(3+),-Er(3+)之间的能量转移上转换是主要过程,且其逆过程不可忽视。
4)  fluoride glasses
氟化物玻璃
1.
The chemical stability of new oxyfluoride glasses containing telluride at different conditions was investigated.
对新型含碲氧氟化物玻璃在中性、碱性、酸性条件下的化学稳定性进行了研究。
5)  fluoride glass
[化]氟化物玻璃
6)  oxyfluoride glass
氟氧化物玻璃
1.
Three kinds of oxyfluoride glass were fabricated with the aim of studying the relation between Er 3+ luminescence and the fluoride micro-crystallite formed in the oxyfluoride glass.
为了研究铒离子的发光和氟氧化物玻璃中形成的氟化物微晶的关系 ,制备了三种掺铒的氟氧化物玻璃 。
2.
The slab waveguide of oxyfluoride glass was fabricated by Ag+–Na+ ion-exchange.
用Ag+–Na+离子交换法,制备了氟氧化物玻璃平面光波导。
补充资料:氟化物玻璃
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性质:以氟化铍(BeF2)、氟化铅(PbF2)为主要成分的玻璃。具有低熔制温度、特低折射率、低色散、化学稳定性差,易在空气中潮解、易失透等特性。加少量偏磷酸钠可改善其化学稳定性。主要作为特种光学玻璃的基础玻璃。氟化铍与二氧化硅结构上具有相似性,常作为模拟物质,用于较低温度下研究模拟相图。

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