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1. 宁波大学, 信息科学与工程学院,浙江 宁波,315211
2. 绍兴托普信息职业技术学院, 基础学部,浙江 绍兴,312000
3. 杭州师范学院理学院, 物理系,浙江 杭州,310036
收稿日期:2006-10-14,
修回日期:2007-03-10,
纸质出版日期:2007-05-20
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屠明亮, 黄炜, 张旭东, 戴世勋, 沈祥, 王训四, 徐铁峰. B<sub>2</sub>O<sub>3</sub>含量对掺铒碲铌酸盐玻璃光谱性质及热稳定性影响[J]. 发光学报, 2007,28(3): 361-366
TU Ming-liang, HUANG Wei, ZHANG Xu-dong, DAI Shi-xun, SHENG Xiang, WANG Xun-si, XU Tie-feng. Effect of B<sub>2</sub>O<sub>3</sub> Content on the Spectroscopic Properties and Thermal Stability of Er<sup>3+</sup>-doped Niobic Tellurite Glasses[J]. Chinese Journal of Luminescence, 2007,28(3): 361-366
屠明亮, 黄炜, 张旭东, 戴世勋, 沈祥, 王训四, 徐铁峰. B<sub>2</sub>O<sub>3</sub>含量对掺铒碲铌酸盐玻璃光谱性质及热稳定性影响[J]. 发光学报, 2007,28(3): 361-366 DOI:
TU Ming-liang, HUANG Wei, ZHANG Xu-dong, DAI Shi-xun, SHENG Xiang, WANG Xun-si, XU Tie-feng. Effect of B<sub>2</sub>O<sub>3</sub> Content on the Spectroscopic Properties and Thermal Stability of Er<sup>3+</sup>-doped Niobic Tellurite Glasses[J]. Chinese Journal of Luminescence, 2007,28(3): 361-366 DOI:
制备了一系列碲铌酸盐玻璃85TeO
2
-(15-x)Nb
2
O
5
-xB
2
O
3
-1%Er
2
O
3
(TNB
x
=0
3
6
9
12
15).根据Judd-Ofelt(J-O)和McCumber理论
讨论和分析了B
2
O
3
含量对掺铒碲铌酸盐玻璃热稳定性及光谱性质影响.研究发现
玻璃开始析晶温度和玻璃转变温度差值Δ
T
(
T
x
-
T
g
)
J-O强度参数
FWHM和峰值受激发射截面的乘积在B
2
O
3
引入摩尔分数为9%时达到最大值.同时
Er
3+
:
4
I
13/2
能级寿命也随着B
2
O
3
含量的增加而单调增加.结果表明
在掺铒碲铌玻璃中
适量的B
2
O
3
能较好地提高玻璃的热稳定性能和Er
3+
离子的光谱性质.
A series of niobic tellurite glasses of 85TeO
2
-(15-x) Nb
2
O
5
-xB
2
O
3
-1%Er
2
O
3
(TNB
x
=0
3
6
9
12
15
molar fraction) glasses were prepared. The effect of B
2
O
3
content on the spectroscopic properties and thermal stability of Er
3+
-doped niobic tellurite glasses were investigated and discussed based on Judd-Ofelt(J-O) and McCumber theory. For the glasses with different B
2
O
3
content
it is found that the transition temperature (
T
g
)
crystallization onset temperature (
T
x
)Δ
T
J-O intensity parameters Ω
t
(
t
=2
4
6)
the product of fluorescence full width at half maximum (FWHM) and the peak of stimulated emission cross-section (σ
peake
) reach the maximum values when B
2
O
3
is 9%(molar fraction). The measured lifetime of Er
3+
:
4
I
13/2
level (τ
m
) increases monotonically with increasing B
2
O
3
.The results indicate that in Er
3+
-doped niobic tellurite glasses
proper amount of B
2
O
3
can be used as a mo-difier to improve thermal stability and spectroscopic properties of Er
3+
ions.
YANG J H,Dai S X,Dai N L,et al.Effect of Bi2O3 on the spectroscopic of erbium-doped bismuth silicate glasses[J].J.Opt.Soc.Am.B,2003,20(5):810-815.
Gao Yuan,Nie Qiuhua,Xu Tiefeng,et al.Spectroscpic properties and Judd-Ofelt theory analysis of a new Er3+/Yb3+-codoped germanotellurite glass[J].Chin.J.Lumin.(发光学报),2006,27(1):47-52 (in Chinese).
Jiang S B,Luo T,Hwang B C,et al.Er3+-doped phosphate glasses for fiber amplifers with high gain per unit length[J].J.Non-Cryst.Solids,2000,263-264:364-368.
Wang J S,Vogel E M,Snitzer E,et al.Tellurite glass:A new candidate for fiber devices[J].Opt.Mater.,1994,3(4):187-203.
Tanabe S,Sugimoto N,Ito S,et al.Broadband 1.5μm emission of Er3+ ions in bismuth-based oxide glasses for potential WDM amplifier[J].J.Lumin.,2000,87-89:670-672.
Lin H,Meredith G,Jiang S B,et al.Optical transitions and visible upconversion in Er3+ doped niobic tellurite glass[J].J.Appl.Phys.,2003,93(1):186-191.
Dai S X,Wu J L,Zhang J J,et al.The spectroscopic properties of Er3+-doped TeO2-Nb2O5 glasses with high mechanical strength performance[J].Spectrochimica Acta Part A,2005,62(1-3):431-437.
Cho D H,Choi Y G,Kim K H.Improvement of 4I11/2→4I13/2 transition rate and thermal stabilities in Er3+ doped TeO2-B2O3(GeO2)-ZnO-K2O glass[J].ETRI,2001,23(4):151-157.
Judd B R.Optical absorption intensities of rare-earth ions[J].Phys.Rev.,1962,127(3):750-761.
Ofelt G S.Intensities of crystal spectra of rare earth ions[J].J.Chem.Phys.,1962,37(3):511-520.
Tanabe S,Ohyagi T,Soga N,et al.Compositional dependence of Judd-Ofelt parameters of Er3+ ions in alkali-metal borate glasses[J].Phys.Rev.B,1992,46(6):3305-3310.
Tanabe S.Optical transitions of rare earth ions for amplifiers:how the local structure works in glass[J].J.Non-Cryst.Solids,1999,259(1-3):1-9.
Tanabe S,Ohyagi T,Todoroki S,et al.Relation between the Ω6 intensity parameters of Er3+ ions and the 151Eu isomer shift in oxide glasses[J].J.Appl.Phys.,1993,73(12):8451-8454.
Pauling L.The Nature of the Chemical Bond[M].Third Edition,Ithaca:Cornell University Press,N.Y.,1960.
McCumber D E.Einstein relations connecting broadband emission and absorption spectra[J].Phy.Rev.,1964,136(4A):A954-A957.
MinacaloO W J,Quimby R S.General procedure for the anslysis of Er3+ cross sections[J].Opt.Lett.,1991,16(4):258-260.
Yang J,Dai S,et al.Spectroscopic properties & thermal stability of Er3+ doped bismuth based glasses for optical amplifier[J].J.Appl.Phys.,2003,93(3):977-983.
Shen Xiang,Nie Qiuhua,Xu Tiefeng,et al.Er3+/Yb3+ codoped tungsten-tellurite glasses:the thermal stability and spectral properties at 1.5μm band[J].Chin.J.Lumin.(发光学报),2006,27(1):36-40 (in Chinese).
Feng X,Tanabe S,Hanada T.Spectroscopic properties and thermal stability of Er3+ doped germanotellurite glasses for broadband fiber amplifiers[J].J.Am.Ceram.Soc.,2001,84(1):165-171.
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