首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 390 毫秒
1.
报道了Tm3+/Ho3+共掺的镓铋酸盐玻璃14Ga2O3-25Bi2O3-20GeO2-31PbO-10PbF2玻璃1.47μm(S波段)发光和能量传递特征,应用Judd-Ofelt理论计算了玻璃的强度参数Ωt(t=2,4,6),自发辐射概率A、荧光分支比β,荧光辐射寿命τ等各项光谱参数以及有效荧光线宽Δλeff和峰值发射截面σpeake.通过测量荧光光谱和荧光寿命研究了Ho3+离子掺杂浓度对Tm3+离子1.47μm波段发光性能的影响,分析了Tm3+和Ho3+之间的能量传递过程.结果表明一定浓度内Ho3+的共掺迅速降低了Tm3+3F4能级的粒子数,而对3H4能级粒子数影响不大,从而降低了3F43H4能级间布居数反转的难度,极大地提高了1.47μm发光效率.研究表明镓铋酸盐玻璃是适用于S波段光纤放大器的一种潜在基质材料,而掺杂一定浓度的Ho3+离子有利于提高Tm3+离子在1.47μm波段的发光效率. 关键词: 重金属氧化物玻璃 光谱性质 3+/Ho3+离子')" href="#">Tm3+/Ho3+离子 能量传递  相似文献   

2.
研究了Tm3+/Ho3+共掺TeO2-WO3-ZnO玻璃在808 nm激光二极管抽运下的2.0μm发光特性及Tm3+与Ho3+之间的能量传递.应用Judd-Ofelt理论计算了Ho3+在碲酸盐玻璃中的谱线强度参量Ωt (t=2,4,6)、自发辐射概率Ar、辐射寿命τr等.计算了Ho3+的吸收截面σa(λ)和受激发射截面σe(λ).结果表明:碲酸盐玻璃中Tm3+→Ho3+正向能量传递系数大约是Tm3+←Ho3+反向能量传递系数的18倍.Ho3+离子的5I7能级的寿命为3.9ms,2.0μm处的最大发射截面为9.15×10-21cm2.在0.5mol% Tm2O3和0.15mol% Ho2O3共掺的碲酸盐玻璃中能获得2.0μm的最大增益.通过比较氟化物、碲酸盐和镓铋酸盐重金属氧化物等玻璃中Ho3+的量子效率ησe×τm值和增益系数G(λ)等,发现Tm3+/Ho3+共掺碲酸盐玻璃是一种理想的2.0μm激光器用基质玻璃. 关键词: 2.0μm发光 能量传递 增益 碲酸盐玻璃  相似文献   

3.
采用熔融冷却法制备了系列Ho3+/Pr3+共掺的Ge25Ga10Se65玻璃样品,测试了样品的吸收光谱以及908 nm激光抽运下的中红外荧光光谱和Ho3+离子5I7能级寿命.计算了Ho3+:5I75I8发射截面和Pr3+:3H43F2吸收截面,讨论了Ho3+,Pr3+离子之间的能量转移效率及Pr3+离子浓度的影响.通过拟合Ho3+离子2.0 μm荧光衰减曲线判断能量转移机理.结果表明,Ho3+掺杂Ge25Ga10Se65玻璃中引入Pr3+离子可以有效提高Ho3+离子的2.9 μm荧光强度. 关键词: 中红外发光 硫系玻璃 3+/Pr3+共掺')" href="#">Ho3+/Pr3+共掺  相似文献   

4.
采用高温固相合成法制备了多组Yb3+/Ho3+/Tm3+不同物质的量分数掺杂的LiTaO3多晶材料,测试了双掺Yb3+/Ho3+,Yb3+/Tm3+和三掺Yb3+/Ho3+/Tm3+的LiTaO3多晶的X射线衍射图谱、紫外-可见吸收谱和上转换荧光发射谱。X射线衍射(XRD)结果显示,稀土离子掺杂没有改变LiTaO3多晶的物质结构,这表明稀土离子以取代基质离子的方式进入了晶格中。样品的紫外吸收边显示,增加Ho3+或Tm3+物质的量分数会导致吸收边先红移再蓝移。在980 nm泵浦光激发下,可见光区域中出现上转换蓝光(475 nm)、绿光(545 nm)和红光(663 nm和650 nm)发射,通过改变LiTaO3中的激活离子Ho3+<...  相似文献   

5.
用高温熔融法制备了Tm3+/Ho3+/Yb3+共掺碲酸盐玻璃(TeO2-ZnO-La2O3)样品,测试了玻璃样品的吸收光谱和上转换发光光谱,分析了上转换发光机理.结果发现:在975 nm波长激光二极管(LD)激励下,制备的碲酸盐玻璃样品可以观察到强烈的红光(662 nm)、绿光(546 nm)和蓝光(480 nm)三基色上转换发光,红光对应于Tm3+离子 关键词: 碲酸盐玻璃 上转换发光 白光 3+/Ho3+/Yb3+共掺')" href="#">Tm3+/Ho3+/Yb3+共掺  相似文献   

6.
制备了Tm3+(8.0mol%)掺杂(77-x)GeO2-xGa2O3-8Li2O-10BaO-5La2O3(x=4,8,12,16)系列玻璃.系统地研究了Ga2O3从4mol%变化到16mol%时,玻璃的光谱性质与热学性质的变化规律.差热分析表明,随着Ga2O3含量的增加,锗酸盐玻璃的热稳定性增加.运用Judd-Ofelt(J_O)理论计算得到了Tm3+在不同Ga2O3含量的GeO2-Ga2O3-Li2O-BaO-La2O3玻璃中的J-O强度参数(Ω2Ω4Ω6)及Tm3+各激发能级的自发跃迁概率、荧光分支比以及辐射寿命等光谱参量.在808nm激光二极管的激发下,测试并分析了Ga2O3对Tm3+荧光光谱特性的影响.随着Ga2O3从4mol%增加到16mol%,Tm3+在1.8μm处的荧光强度呈现先减弱后增强的特性.当Ga2O3含量大约在12mol%时,Tm3+在1.8μm处的荧光强度最弱,受激发射截面达到最小.还初步讨论了Ga2O3对玻璃结构与光谱参数的影响规律. 关键词: 3+掺杂锗酸盐玻璃')" href="#">Tm3+掺杂锗酸盐玻璃 光谱性能 Judd-Ofelt参数 热稳定性  相似文献   

7.
制备了Tm3+,Yb3+共掺氟氧化物微晶玻璃, 在980 nm二极管激光器泵浦下研究了其上转换发光。发现将前驱玻璃进行热处理后,源于Tm3+1G4能级到基态3H6跃迁所产生的蓝色上转换荧光在463 nm和476 nm出现明显劈裂。在此基础上分析了该劈裂蓝色上转换荧光在303~623 K范围内的温度特性。结果表明:Tm3+,Yb3+共掺氟氧化物微晶玻璃蓝色上转换荧光可应用于光学测温,其测温最大灵敏度为4.2×10-4 K-1,相应温度为352 K。  相似文献   

8.
郑辉  相苏原  陈宝玖 《发光学报》2014,35(7):800-806
采用微波水热方法合成了Er3+/Yb3+及Tm3+/Yb3+两个共掺杂的绣球花状NaY(WO42微米球样品。XRD结果表明所获得的产物为纯相体心结构的NaY(WO42,利用SEM观察发现产物粒子结构为纳米片组装成的绣球花状。考虑到红外激光辐照对样品产生加热效应,采用380 nm激发下不同温度的发射光谱获得了Er3+/Yb3+共掺杂NaY(WO42微米球的温度传感特性曲线和灵敏度曲线。把Er3+/Yb3+共掺杂NaY(WO42与Tm3+/Yb3+共掺杂的NaY(WO42按质量比1:10进行混合,采用980 nm激发测量了混合物的上转换发光光谱,研究了激光持续辐照对Tm3+/Yb3+掺杂NaY(WO42样品的加热效应和Tm3+1G43H6 跃迁发光强度随激光辐照时间的变化。实验发现980 nm激光辐照使Tm3+/Yb3+掺杂NaY(WO42样品的温度持续升高并达到某一平衡温度,Tm3+的蓝色上转换发光也随着激光辐照时间的延长而增强,最后达到饱和。此外,在相同条件下,Tm3+/Yb3+共掺杂样品的激光辐照热效应比Er3+/Yb3+共掺杂样品的热效应更为显著。  相似文献   

9.
制备了高折射率Tm3+/Yb3+共掺杂铋碲酸盐玻璃,利用棱镜耦合法测量出玻璃在632.8和1550nm波长处的折射率分别为2.0365和1.9795. 对玻璃的吸收、荧光和红外透过光谱展开了测试与分析,根据Judd-Ofelt理论对吸收光谱进行拟合,求得Tm3+的振子强度参数Ωt(t=2,4,6)分别为3.90×10-20, 2.03×10-20和9.03×10-2 关键词: 3+/Yb3+共掺')" href="#">Tm3+/Yb3+共掺 铋碲酸盐玻璃 光谱参数 上转换荧光  相似文献   

10.
NaZnLa(PO4)2中Ce3+和Tb3+的发光   总被引:2,自引:0,他引:2       下载免费PDF全文
采用高温固相反应合成了NaZnLa(PO4)2中掺杂Ce3+、Tb3+的荧光体,对其晶体结构、发光行为进行了研究,并尝试对NaZnLa(PO4)2:Ce,Tb荧光体进行调制。NaZnLa(PO4)2是LaPO4的同构物,为单斜晶系独居石结构,从XRD谱数据得到NaZnLa(PO4)2基质的晶胞参数为a=0.6823nm,b=0.7045nm,c=0.6497nm,β=1039°,v=0.303nm3,其晶胞参数与单斜LaPO4的晶胞参数相似。在NaZnLa(PO4)2:Ce,Tb荧光体中,Ce3+对Tb3+有良好的敏化作用,掺杂适量的BO33-、Al3+、Dy3+,可以增强发光亮度。  相似文献   

11.
在室温下,测量了Er:Tm:NaY(WO4)2晶体的吸收光谱、激发光谱、发射光谱以及上转换发光,并运用J-O理论对测量的结果进行了计算,得出了Er:Tm:NaY(WO4)2晶体的强度参数.报道了Tm,Er离子间特殊的能量传递和相关上转换,解释了离子间的能级跃迁过程.同时,对于Er增强Tm离子近红外发光的特性也作了充分研究. 关键词: 4)2晶体')" href="#">Er:Tm:NaY(WO4)2晶体 吸收光谱 发射光谱 激发光谱 上转换  相似文献   

12.
A complete set of spectroscopic parameters, including Judd-Ofelt parameters, radiative transition probabilities, radiative lifetime, branching ratios and integrated absorption cross section, have been calculated for Tm3+- doped fluoroaluminate (AYF) glass, based on the measured absorption spectra. The mechanism of Tm3+→Tm3+ and Yb3+\Leftrightarrow Tm3+ energy transfers and fluorescence properties have been investigated in both Tm3+ single-doped and Yb3+/Tm3+ double-doped AYF glasses. The cross-relaxation process, 3F4+3H6→23H4, is proved, which makes the optimum Tm3+ concentration of 1.77μm fluorescence (3H43H6) much higher than 1.45μm fluorescence (3F433H4) in Tm3+:AYF glasses. In Yb3+/Tm3+:AYF glasses, a stronger concentration quenching is found for the 476nm emission than that for the 797nm emission, and is discussed under the 970nm-excitation.  相似文献   

13.
采用高温熔融法制备了组分为TeO2-ZnO-Na2O的Tm3+离子单掺和Tm3+/Yb3+共掺碲酸盐玻璃,应用Judd-Ofelt理论计算分析了玻璃样品的强度参量Ωt(t=2, 4, 6),自发辐射跃迁几率A,荧光分支比β和荧光辐射寿命τrad等光谱参量,测量得到了不同Yb3+离子掺杂浓度下玻璃样品的Tm3+离子上转换发光谱.结果显示,在980 nm泵浦光激励下玻璃样品发射出强烈的近红外上转换荧光.对Tm3+离子上转换发光分析表明,强烈的Tm3+离子近红外上转换发光主要来自于Yb3+/Yb3+离子间的共振能量传递以及基于单声子和双声子辅助的Yb3+/Tm3+离子间的非共振能量传递过程,并进一步计算得到了声子贡献比和能量传递系数.最后,计算分析了Tm3+:3F43H6能级间跃迁的1.8 μm波段吸收截面、受激发射截面和增益系数.研究表明,Yb3+/Tm3+共掺TeO2-ZnO-Na2O玻璃可以作为近红外波段固体激光器的潜在增益基质.  相似文献   

14.
With the help of absorption and fluorescence spectra, the spectroscopic properties of Tm3+, Ho3+:YVO4 crystals have been investigated under different dopant concentrations. The absorption results show that the maximum absorption in the spectral range of currently available powerful laser diodes (LD) is at 796 nm, corresponding to the transition 3H63H4 of Tm3+ in the crystals. Upon the excitation with a LD at 808 nm, we have detected ten fluorescence bands in the spectral range spanning from visible to infrared. In visible region 4 upconversion bands have been observed centered at 475, 547, 660, and 701 nm. Discussions of the energy transfer processes suggest that cross relaxations and excited absorptions with the involvement of Tm3+ 3F4, 3H5 and Ho3+ 7I5 states are responsible for the four upconversion emissions. Comprising the relative integrated intersities of 2 μm (Ho3+: 5I75I8) and 1.8 μm (Tm3+: 3F_4→3H6) bands we have observed an efficient energy transfer from Tm3+ (3F4) to Ho3+ (5I7). Examination of the ratios of the intensity of 2 μm band to that of 1.8 μm band as a function of the ratios of Tm3+ concentration (cTm) to Ho3+ concentration (cHo) indicates that small concentration ratios (cTm/cHo) lead to high efficient energy transfers of Tm3+(3F4)→Ho3+(5I7).  相似文献   

15.
New type of fluorophosphate glasses with different Tm3+/Ho3+ doping concentrations have been prepared. From the measured fluorescence spectra, strong emission near 2 μm is demonstrated in the samples. Based on the absorption spectra, the Judd–Ofelt parameters and radiative properties were calculated and compared with those of other glass hosts. Then for our prepared Tm3+/Ho3+ codoped fluorophosphate glass, the higher predicted spontaneous transition probability (76.54 s?1) along with the larger calculated emission cross-section (6.15×10?21 cm2) gives evidence of intense 2 μm fluorescence. Besides, it is found that the optimum doping concentration is 4 mol% Tm3+/1 mol% Ho3+ for the strongest 2 μm emission in our prepared samples.  相似文献   

16.
Using the technique of high-temperature melting, a new Er3+/Yb3+ co-doped fluorophosphate glass was prepared. The absorption and fluorescence spectra were investigated in depth. The effect of Er3+ and Yb3+ concentration on the spectroscopic properties of the glass sample was also discussed. According to the Judd-Ofelt theory, the oscillator strength was computed. The lifetime of 4I13/2 level (τm) of Er3+ ions was 8.23 ms, and the full width at half maximum of the dominating emission peak was 68 nm at 1.53 τm. The large stimulated emission cross section of the Er3+ was calculated by the McCumber theory. The spectroscopic properties of Er3+ ion were compared with those in different glasses. The full width at half maximum and σe are larger than those of other glass hosts, indicating this studied glass may be a potentially useful candidate for high-gain erbium-doped fiber amplifier.  相似文献   

17.
The spectroscopic properties and energy transfer mechanisms in Ho3+ doped fluorophosphate glasses sensitized by Er3+ and Tm3+ at the 2 μm region are investigated. The absorption spectra and fluorescence spectra of the Tm–Ho doubly-doped glass system and Er–Tm–Ho triply-doped glass system are measured. According to the absorption spectra, the Judd–Ofelt parameters and spontaneous transition probability are calculated and compared with those of other glass hosts. From the fluorescence spectra, the fluorescence intensity of Er–Tm–Ho glass system at 2.0 μm is 0.95 and larger than that of the Tm–Ho glass system, which is 0.69. Meanwhile, the 2.0 μm to 1.8 μm and 2.0 μm to 1.53 μm peak intensity ratios in the Er–Tm–Ho glass system are 8.63 and 22.79, respectively, suggesting sufficient energy transfer between Er3+, Tm3+ and Ho3+ ions. In addition, the pumping schemes and energy transfer mechanisms of Tm–Ho doubly-doped and Er–Tm–Ho triply-doped glasses are discussed. The study indicates that the Er–Tm–Ho triply-doped glass system is a significant sensitized way pumped at 800 nm in fluorophosphate glasses for 2 μm applications.  相似文献   

18.
Yb3+:Er3+:Tm3+ co-doped borosilicate glasses are prepared.Their strong up-conversion photoluminescence spectra in a range from ultra-violet to near-infrared,which are excited by a 978-nm laser diode,are measured,and the mechanisms of energy transfer among Yb3+,Er3+ and Tm3+ ions are discussed.The results show that there is an unexpected wavelength at 900-nm emission from Yb3+ Stark splitting levels to pump Tm3+ ions and there exists an optimum pump power.The concentration of the Tm3+ dopant gives rise to a prominent effect on the intensity of visible and near-infrared emissions for the Yb3+:Er3+:Tm3+ co-doped borosilicate glasses.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号