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1.
贾相华  吕树臣 《物理学报》2007,56(8):4971-4976
制备了Er3+及Er3+/Yb3+共掺铋酸盐玻璃,测试了样品的吸收光谱、荧光光谱.应用Judd-Oflet理论计算了Er3+在铋酸盐玻璃中的光谱强度参数,分别为Ω2=(5.47—2.92)×10-20cm2Ω4=(2.16—1.22)×10-20cm2, 关键词: 3+')" href="#">Er3+ 铋酸盐玻璃 3+/Yb3+共掺')" href="#">Er3+/Yb3+共掺 光谱性质  相似文献   

2.
用高温熔融法制备了碲酸盐玻璃(70TeO2-9B2O3-6Nb2O5-5Na2O-10ZnO-1%(质量分数)Er2O3)样品。测试了玻璃样品的吸收光谱和荧光光谱。应用Judd-Ofelt理论计算了Er3+离子的谱线强度、自发辐射跃迁几率、荧光分支比、辐射寿命等光谱参数,并拟合了相应的强度参数Ωt(t=2,4,6)(Ω2=8.01×10-20cm24=2.09×10-20cm26=1.15×10-20cm2)。结果发现该碲酸盐玻璃具有较大的Ω2值,说明Er—O键的共价性强于它在硅酸盐、锗酸盐、氟化物、铋酸盐和磷酸盐玻璃中的共价性。Er3+在碲酸盐玻璃中4I13/24I15/2跃迁几率约为492s-1,表明Er3+可能有较强的1.5μm发射。分析了Er3+在碲酸盐玻璃中能级4I13/24I15/2发射的荧光半峰全宽(FWHM=73nm),并应用McCumber理论计算了Er3+的受激发射截面(σe=1.08×10-20cm2),发现其FWHM×σe远大于Er3+在铋酸盐、磷酸盐、锗酸盐和硅酸盐玻璃中的受激发射截面,说明碲酸盐玻璃是一种制备宽带光纤放大器的优良基质材料。  相似文献   

3.
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(Ω2,Ω4,Ω6)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   

4.
丁君  杨秋红  唐在峰  徐军  苏良碧 《物理学报》2007,56(4):2207-2211
采用传统无压烧结工艺制备了Yb3+/Er3+共掺的氧化镧钇透明陶瓷并对其光谱性能进行了研究.样品具有较大的吸收和发射截面.La2O3的添加使样品的荧光寿命(τs)与玻璃接近,当Yb3+和Er3+的掺杂量分别为5at%和0.5at%时,测得τs=9.65 ms.这种荧光寿命长、发射截面大和线宽窄的特性有利于微型、可集成化和大功率激光输出的实现. 关键词: 透明陶瓷 吸收光谱 发射光谱 荧光寿命  相似文献   

5.
Er3+/Yb3+共掺杂铋酸盐玻璃的上转换发光和能量传递   总被引:3,自引:2,他引:1       下载免费PDF全文
用高温熔融法制备了Er3+/Yb3+共掺杂的45Bi2O3-45GeO2-10PbO玻璃,对玻璃样品进行了光谱测试,分析了上转换发光机制和Yb3+→Er3+的能量传递效率。通过Yb3+离子浓度对Er3+离子在铋酸盐玻璃中的上转换荧光强度影响的研究,得到Er3+质量分数为0.5%以及Yb3+质量分数为2.5%时上转换发光强度最大。研究结果表明,在970nm泵浦激发下,Er3+/Yb3+共掺杂B45G45P10玻璃在532,545,673nm处产生较强的上转换绿光和红光,是一种较为理想的上转换发光基质材料。  相似文献   

6.
用高温融熔法制备了Eu3+掺杂浓度为1%的(60-x)Bi2O3xPbO30B2O310ZnO(x=0,10,30,摩尔分数)玻璃.测定了玻璃的差热分析曲线、吸收光谱、声子边带谱、发射光谱与激发光谱.由发射光谱与稀土Eu3+离子光学跃迁矩阵元的特点,计算了Eu3+光学跃迁的J-O参数Ω2与Ω4.结果显示强度参数Ω2随着PbO量的增加而略减少,表明材料的对称性略增加,Eu—O键强减弱,共价性降低.PbO组分的增加,使玻璃的结晶起始温度与软化温度差降低,导致玻璃的热温度性变差.随着PbO的增加,电-声子耦合减弱.  相似文献   

7.
在Er3+/Yb3+共掺TeO2-WO3-ZnO玻璃中引入Ce3+,研究了Ce3+对Er3+1.5μm发射性能及其上转换发光性能的影响。结果表明,随Ce3+浓度的增加Er3+1.5μm波段的荧光强度先增强后降低,优化的Ce3+掺杂浓度在2.07×1020/cm3左右;1.5μm波段的荧光寿命则随Ce3+浓度的增加有轻微降低,从3.4ms降到3.0ms,但Ce3+浓度的增加对1.5μm波段的荧光半高宽基本无影响;Er3+/Ce3+间的交叉弛豫Er3+(4I11/2)+Ce3+(2F5/2)→Er3+(4I13/2)+Ce3+(2F7/2)使玻璃的上转换发光强度大大降低,但在过高的Ce3+浓度下,Er3+/Ce3+间的另一交叉弛豫Er3+(4I13/2)+Ce3+(2F5/2)→Er3+(4I15/2)+Ce3+(2F7/2)则使Er3+4I13/2能级粒子数减少,导致1.5μm波段荧光强度和荧光寿命降低. 关键词: 碲钨酸盐玻璃 发光性能 3+离子')" href="#">Er3+离子 3+离子')" href="#">Ce3+离子 交叉弛豫  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Er3+/Yb3+共掺的碲钨酸盐玻璃样品,TeO2-WO3-RmOn(RmOn=PbO,BaO,La2O3,Bi2O3),研究了样品的热稳定性和1.5μm波段的光谱性质。碲酸盐中引入WO3的目的是为提高基质的声子能量,使Er3+离子4I13/24I15/2的多声子弛豫速率增加,从而提高4I13/2能级上的Er3+离子数,这对提高1.5μm处的荧光强度有利,另外加入WO3也能提高碲酸盐玻璃的抗析晶能力。测试了样品的FT-IR光谱,发现碲钨酸盐玻璃样品中存在着TeO4、TeO3、WO4和WO6结构体。周围环境的不对称性导致Er3+在1.5μm处的光谱有非均匀的展宽和大的受激发射截面。Er3+在70TeO2-20WO3-10Bi2O3玻璃中4I13/24I15/2能级发射的荧光半峰全宽(FWHM)为77nm,应用McCumber理论计算的受激发射截面(σpeak)为1.03×10-20cm2。其FWHM×σpeak乘积远大于掺Er3+的铋酸盐、磷酸盐、碲酸盐和硅酸盐玻璃,说明碲钨酸盐玻璃是一种制备宽带光纤放大器优良基质材料。  相似文献   

10.
肖凯  杨中民  冯洲明 《物理学报》2007,56(6):3178-3184
研究了Er3+离子掺杂钡镓锗玻璃的吸收光谱、拉曼光谱和上转换光谱.分析了Er3+离子在钡镓锗玻璃中的上转换发光机理.结果表明:玻璃的最大声子能量为828cm-1,紫外截止波长为275nm.采用800nm和980nmLD激发玻璃样品,在室温下观察到强烈的上转换绿光和红光发射.随着Er3+离子浓度的增加,绿光发光强度先增加后减小,而红光发光强度呈单调递增趋势.能量分析表明:800nmLD激发产生的绿光主要源于Er3+离子4I13/2能级的激发态吸收过程;红光发射主要源于Er3+离子4I13/2能级与4I11/2能级之间的能量转移过程.980nmLD激发产生的绿光主要源于Er3+离子4I11/2能级之间的能量转移过程;而红光发射主要源于Er3+离子4I13/2能级与4I11/2能级之间的能量转移过程和4I13/2能级的激发态吸收过程.通过量子效率分析,发现采用800nmLD激发Er3+离子掺杂浓度为1mol% 的样品时,上转换绿光发光效率最高. 关键词: 上转换发光机理 3+离子掺杂')" href="#">Er3+离子掺杂 钡镓锗玻璃  相似文献   

11.
苏方宁  邓再德 《中国物理》2006,15(5):1096-1100
The Er^3+/Yb^3+ co-doped TeO2-Nb2O5-Li2O glass is prepared by conventional melting method, and its upconversion spectra are measured. The intense green upconversion luminescence upon excitation with a 976 nm laser diode is observed with the naked eyes. The dependence of luminescence intensity on the ratio of Yb^3+/Er^3+ is discussed in detail, and the relationship between the ratio of green luminescence intensity to red luminescence intensity and the ratio of Yb^3+/Er^3+ is also studied, The luminescence intensity increases with the ratio of Yb^3+/Er^3+ increasing. The ratio of Yb^3+/Er^3+ plays a more important role than the concentration of Er^3+ in determining the upconversion luminescence intensity. The ratio of green luminescence intensity to red luminescence intensity reaches a maximum when ratio of Yb^3+/Er^3+ is 3. Thus the glass could be one of the potential candidates for LD pumping solid-state lasers.  相似文献   

12.
Er3+单掺及Er3+/Yb3+共掺SiO2-Al2O3-La2O3玻璃光谱性质研究   总被引:10,自引:4,他引:6  
研究了单掺Er3+及Er3+/Yb3+共掺SiO2-Al2O3-La2O3玻璃的光谱性质随稀土离子浓度变化规律,应用McCumber理论计算了玻璃在1.53 μm的发射截面及积分吸收截面.结果表明:在Er3+离子掺杂浓度相同时,玻璃在980 nm吸收截面与Yb3+掺杂浓度成反比;当样品中Yb3+离子掺杂浓度为3.94×1020 cm-3时,玻璃在1.53 μm的吸收截面和发射截面最大,在1.40~1.60 μm积分吸收截面也最大;Er3+/Yb3+共掺SiO2-Al2O3-La2O3玻璃在1.53 μm的荧光半高宽随Er3+掺杂浓度升高而增加,当Er3+离子掺杂浓度为2.41×1020 cm-3时,玻璃的荧光半高宽(FWHM)达到52.5 nm.  相似文献   

13.
郭琳娜  王育华 《物理学报》2011,60(2):27803-027803
采用化学共沉淀法制备了系列Y1.98-2xYb2x Er0.02SiO5(0.00≤x≤0.15)以及Y1.736Yb0.24Er0.02Tm0.004SiO5上转换发光材料,比较了室温下Y1.98-2xYb2x Er0.02 SiO5 (x=0.00,0.08)样品在400—1600 nm范围内的吸收光谱,测量了所有样品在976 nm OPO激光器激发下的上转换发射光谱,以及Er3+离子4S3/2(4F9/2)→4I15/2,Tm3+离子1G43H6荧光衰减曲线和不同激发功率下的上转换蓝光发射强度,从而分析讨论了Er3+,Tm3+在Y2SiO5中的上转换发光机理.研究结果表明:在1250 ℃相对较低的温度下合成了X2型单斜晶系Y2SiO5 ∶Ln3+(Ln3+=Er3+,Yb3+,Tm3+),Yb3+的敏化显著增强了样品在976 nm附近的吸收能力,并大幅度加宽了该处的吸收带.分析上转换发射光谱发现:上转换绿光和红光强度都随着Yb3+浓度的增加先增强后减弱,但红光的猝灭浓度较高,归因于Er3+→Yb3+反向能量传递ETU4和Yb3+→Er3+正向能量传递ETU3过程的发生;上转换蓝光发射是三光子吸收过程,是通过Yb3+,Tm3+之间三次声子辅助的能量转移方式实现的. 关键词: 上转换 共沉淀 2SiO5∶Er3+')" href="#">Y2SiO5∶Er3+ 3+')" href="#">Yb3+ 3+')" href="#">Tm3+  相似文献   

14.
Yb3+/Er3+ co-doped Zn2SiO4 ceramics are rapidly synthesized by the microwave radiation method. Green and red up-conversion emissions are observed in Zn2SiO4: Yb3+, Er3+ ceramics under 980 nm excitation. The influence of co-doped Li+ or Bi3+ ion on luminescence intensity for the phosphors has been investigated. At Li+ or Bi3+ doping concentration of 1 mol%, up-converted green emission can be increased by 6 times and 20 times, respectively. It is believed that co-doped Li+ or Bi3+ ion results in the local distortion of Er3+ in Zn2SiO4, increasing the intra-4f transitions of Er3+ ions. The local distortion is proved by spectral probing method with Eu3+.  相似文献   

15.
李成仁  李淑凤  董斌  程宇琪  殷海涛  杨静  陈宇 《中国物理 B》2011,20(1):17803-017803
This paper reports that a series of Nd3+:Er3+:Yb3+ co-doped borosilicate glasses have been prepared and their absorption spectra measured. The J--O intensity parameters Ωk (k=2, 4, 6), spontaneous radiative lifetime τrad, spontaneous transition probability A, fluorescence branching ratio β and oscillator strength fed of the Nd3+ ions at room temperature are calculated based on Judd--Ofelt (J--O) theory. The temperature dependence of the up-conversion photoluminescence characteristics in a Nd3+:Er3+:Yb3+ co-doped sample is studied under a 978 nm semiconductor laser excitation, and the energy transfer mechanisms among Yb3+, Er3+ and Nd3+ ions are analysed. The results show that the J--O intensity parameters Ω2 increase when the Nd3+ concentration of the Nd3+:Er3+:Yb3+ co-doped borosilicate glasses increases. The possibility of spontaneous transition is small and lifetimes are long at levels of 4F5/2 and 4F3/2. The intensity of Nd3+ emissions at 595, 691, 753, 813 and 887 nm are markedly enhanced when the sample temperature exceeds 400 K. The reasons being the cooperation of the secondary sensitization from Er3+ to Nd3+ and the contribution of a multi-phonon.  相似文献   

16.
Er3+ doped and Yb3+/Er3+ co-doped Y4Al2O9 phosphors are prepared by the sol-gel method. The effect of dopant concentration on the structure and up-conversion properties is investigated by X-ray diffraction (XRD) and photoluminescence, respectively. XRD pattern indicates that the sample structure belongs to monoclinic. Under 980 nm excitation, the green and red up-conversion emissions are observed and the emission intensities depended on the Yb3+ ion concentration. The green up-conversion emissions decrease with the increase of Yb3+ concentration, while red emission increases as Yb3+ concentration increases from 0 to 8 at% and then decreases at high Yb3+ concentration. The mechanisms of the up-conversion emissions are discussed and results shows that in Er3+ and Yb3+/Er3+ co-doped system, cross-relaxation (CR) and energy transfer (ET) processes play an important role for the green and red up-conversion emissions.  相似文献   

17.
Transparent phosphate glass ceramics co-doped with Er3+ and Yb3+ in the system P2O5Li2OCaF2TiO2 were successfully synthesized by melt-quenching and subsequent heating. Formation of the nanocrystals was confirmed by X-ray powder diffraction. Judd–Ofelt analyses of Er3+ ions in the precursor glasses and glass ceramics were performed to evaluate the intensity parameters Ω2,4,6. Under 975 nm excitation, intense upconversion (UC) and infrared emission (1545 nm) were observed in the glass ceramics by efficient energy transfer from Yb3+ to Er3+. The luminescence processes were explained and the emission cross section was calculated by Fuchtbauer–Ladenburg (F–L) formula. The results confirm the potential applications of Er3+/Yb3+ co-doped glass ceramics as laser and fiber amplifier media.  相似文献   

18.
The broadband near-IR emission has been investigated in a series of Er/Tm co-doped Bi2O3–SiO2–Ga2O3 (BSG) glasses with 800 nm laser diode as an excitation source. A broadband emission extending from 1350 to 1650 nm with a full width at half maximum (FWHM) around 165 nm is obtained in 0.2 wt% Er2O3 and 1.0 wt% Tm2O3 co-doped BSG glass. The fluorescence decay curves of glasses are measured and maximum energy transfer efficiency from Er3+ to Tm3+ reaches 71% when Tm3+ concentration is 1.0 wt%. The temperature dependence of the broadband emission spectra in Er3+–Tm3+ co-doped BSG glass is also recorded to further understand the energy-transfer processes between Er3+ and Tm3+. The present work suggests that Er/Tm co-doped BSG glasses can be a potential candidate for broadband integrated amplifier.  相似文献   

19.
Er3+ and Er3+/Yb3+ co-doped tellurite glasses, suitable for developing optical fiber laser and amplifier, have been elaborated from the conventional melt-quenching method. Results of differential scanning calorimetry (DSC) measurements indicate a good thermal stability of tellurite glasses. The DSC measurements show an improvement of thermal stability of glass hosts after adding P2O5. Absorption spectrum from near infrared to visible was obtained and the Judd–Ofelt (J–O) intensity parameters (Ω2, Ω4, and Ω6) were determined. Spontaneous emission probabilities of some relevant transitions, branching ratio, and radiative lifetimes of several excited states of Er3+ have been predicted using intensity J–O parameters. Absorption cross-section and calculated emission cross-section, using the McCumber method, for the 4I13/24I15/2 transition, were determined and compared for the doped and co-doped glasses. Energy transfer (ET) and effect of changing concentration of P2O5 and Yb3+ ions on spectroscopic properties were investigated. It was found that the addition of P2O5 can increase the symmetry of the Er3+ ion. As a consequence, PL lifetime becomes more longer.The spectroscopic properties and the efficient infrared luminescence indicate that Er3+ doped TeO2–ZnO–Na2O–Er2O3(TZNE) is a promising laser and amplifier materials and may be a potentially useful material for developing upconversion fiber optical devices.  相似文献   

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