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1.
研究了Yb2O3浓度对Tm3 /Yb3 共掺氧卤碲酸盐玻璃的上转换发光的影响,分析了上转换发光机理。结果发现,通过980 nm的激光二极管激发,在室温下同时观察到强烈的蓝光(475 nm)和微弱的红光(649 nm),分别是由于Tm3 离子1G4→3H6和1G4→3F4跃迁产生的;上转换机理分析表明,上转换蓝光和红光都是由于双光子吸收过程。随Yb2O3浓度增加,Yb3 离子寿命降低,Yb3 到Tm3 的能量转移效率增加,上转换蓝光和红光强度先增加,在Yb2O3摩尔比为3时达到最大,然后降低。分析认为,Yb3 的浓度猝灭主要是由于3H4(Tm3 )→2F5/2(Yb3 )反向能量转移的结果。结果表明Yb3 敏化Tm3 掺杂氧卤碲酸盐玻璃是一种上转换蓝光激光器的潜在基质材料。  相似文献   

2.
Tm3+/Yb3+ codoped tellurite glass has been prepared. Density, refractive index, optical absorption, Judd-Ofelt parameters and spontaneous transition probabilities of Tm3+ have been measured and calculated, respectively. Intense blue three-photon upconversion fluorescence and S-band (1470 nm) fluorescence were investigated under the excitation of a 980 nm diode laser at room temperature. Judd-Ofelt parameters, strong blue three-photon upcoversion emission of Tm3+ in glass indicate that Tm3+/Yb3+ codoped tellurite glass is a promising blue color upconversion optical and laser material. In addition, experiment results showed the 980 nm laser was more efficient than 808 nm laser when pumping Tm3+/Yb3+ codoped tellurite glass, Tm3+/Yb3+ codoped tellurite glass also could be a promising material for S-band amplification.  相似文献   

3.
Upconversion fluorescence emission of Er3+-doped oxyfluorosilicate glass excited at 975 nm is experimentally investigated. The results reveal that the intense green and red emission, and weak blue emission centered at 525, 543, 655, and 410 nm, respectively. A two-photon upconversion process is assigned to the green and red emission while a three-photon process is responsible for blue upconversion. The possible upconversion mechanisms are discussed based on excited state absorption and energy transfer between excited Er3+ ions. The intense upconversion fluorescence of Er3+-doped lead oxyfluorosilicate glass may be a potentially useful material for developing upconversion optical devices.  相似文献   

4.
利用高温固相法制备了Tm3+/Yb3+共掺杂的氟氧化物玻璃和玻璃陶瓷材料,在980 nm的激光激发下,样品发射出明亮的蓝色上转换荧光。通过对玻璃和玻璃陶瓷样品的对比,发现Tm3+离子和Yb3+离子之间存在着Tm3+(3H4)→Yb3+(2F5/2)的反向能量传输通道,并且与晶场有较强的依赖关系。分析了在玻璃和玻璃陶瓷中蓝色上转换发光过程,随着敏化剂Yb3+浓度的增加,在玻璃中正向和反向能量传递的竞争作用使得Tm3+离子在Yb3+离子的最佳浓度时上转换发光最强;而在玻璃陶瓷中, Tm3+离子的上转换发光始终随着Yb3+离子的浓度增加而增强。  相似文献   

5.
Er3+/Yb3+共掺杂氧氟硅酸盐玻璃的上转换发光   总被引:8,自引:5,他引:3  
研究了Er^3 /Yb^3 共掺氧氟硅酸盐玻璃的吸收光谱、上转换光谱和拉曼光谱。分析了氧氟硅酸盐玻璃中Yb”敏化Er^3 的上转换发光机理。结果表明:通过975nm的激光二极管激发,在室温下同时观察到蓝光(408nm)、绿光(529nm和545nm)和红光(667nm),分别是由于Er^3 离子。H9/2→^4I15/2,H11/2→^4I15/2,H3/2→^4I15/2和H9/2→^4I15/2跃迁。随Yb2O3浓度的增加。Yb^3 对Er^3 的能量转移增强,因此蓝光、绿光和红光的发光强度都增强,强烈的绿光和红光激发是由于双光子吸收过程,而微弱的蓝光是由于三光子吸收过程。拉曼光谱发现,对Er^3 离子在氧氟硅酸盐玻璃中的上转换发光。玻璃结构中的PbF2起到重要作用。  相似文献   

6.
采用高温固相法制备了Nd,Tm和Yb掺杂的ZBLAN玻璃上转换材料.Tm3+,Yb3+的摩尔浓度分别固定为0.01%,0.3%,Nd3+摩尔浓度变化范围为0.1%~2%.在室温下,测试了样品在300~1 000nm间的吸收光谱.在798 nm近红外光激发下,测试了样品的上转换光谱.实验发现,样品在798 nm红外光激发下发出了较强的多波段(红,蓝和绿)的可见光.由上转换可见光各波段的发射谱线,给出了能级跃迁机制.蓝光主要来源于Tm3+的激发态1G4到基态3H6的跃迁,绿光来源于Nd3+的2H7/2到基态4I9/2的跃迁,红光来源于Nd3+的2H11/2到基态4i9/2的跃迁.研究发现,在Nd3+,Tm3+,Yb3+:ZBLAN玻璃样品中存在激发态吸收,能最转移和交叉弛豫等上转换过程.其发光机理是Nd3+,TM3+和Yb3+离子之间的能量转移.根据Nd3+摩尔浓度不同其上转换发光强度不同,分析了掺入稀土的浓度对上转换发光效率的影响.当Nd3+浓度为1.5%(摩尔分数)时上转换发光最强,大于1.5%后发光开始减弱.  相似文献   

7.
报道了一种新组份亚碲酸盐玻璃作为掺稀土基质在提高升频发光效率方面的优良特性.在970mmLD泵浦下这种Tm3+掺杂的亚碲酸玻璃明显的蓝色及红色升频发光,通过测量其吸收光谱,用J-O理论计算了这种玻璃基质中Tm3+离子各发光能级的自发辐射几率、跃迁振子强度、分支比及寿命等光谱参量.并计算了481mm和650mm两种发光的发射截面.  相似文献   

8.
水热法合成稀土氟化物材料YLiF4:Er,Tm,Yb的上转换发光特性   总被引:2,自引:0,他引:2  
利用水热法合成了不同掺杂浓度Er^3 ,Tm^3 和Yb^3 的YLiF4材料,研究了Er^3 ,Tm^3 和Yb^3 在材料中的光吸收,以及在980nm红外光激发下样品的上转换发光特性。实验发现,在980nm激光激发下,光功率为数10mW,材料可以发出很强的白光。测量发现,蓝光来源于Tm^3 绿光来源于Er^3 ,而红光来源于Tm^3 和Er^3 的共同作用。通过分析输出光强与泵浦功率的双对数曲线,发现484nm蓝光发射,524和552nm绿光发射以及665nm红光发射均属于双光子过程,450nm蓝光和359nm紫外光属于三光子过程。分析发光机理属于协作敏化和声子辅助共振能量传递过程的结合。  相似文献   

9.
胡巍  刘东峰 《光学学报》1997,17(1):4-27
介绍了在普通通讯用单模GeO2/SiO2石英光纤中从近红外到可见光的频率上转换过程。利用1.313μm的调Q锁模Nd:YLF激光脉冲泵浦单模石英光纤,产生了588nm的黄光,峰值功率达20W,对应0.09%的转换效率。  相似文献   

10.
The Yb3+-doped barium gallogermanate glass has been prepared via the conventional melt method. The absorption spectra, the near infrared emission spectra, the upconversion emission spectra and the differential scanning calorimetry have been measured. Bright blue upconversion emission centered at 476 nm has been observed under the 976 nm laser diode excitation at room temperature. The blue upconversion emission mechanism has been discussed on the blue emission intensity and the measured lifetime. The slope of the log-log plot of the blue emission intensity versus the pump power is equal to 1.98, and the blue luminescence decay time is half of the near infrared fluorescence decay time, confirming that the blue emission comes from Yb3+-Yb3+ pairs cooperative upconversion mechanism. The result of differential scanning calorimetry suggests that this type of glass is suitable as a potential candidate for fiber drawing.  相似文献   

11.
Tm3+和 Yb3+共掺杂PGETYA玻璃的直接敏化上转换发光   总被引:2,自引:2,他引:0       下载免费PDF全文
花景田 《发光学报》2009,30(6):750-753
制备了一种稀土离子掺杂的PGETYA氟氧玻璃材料,它不仅具有较高的上转换发光效率,而且还避免了氟化物基质的缺点。其组分为58.52PbF2-34.43GeO2-3Al2O3 -0.05Tm2O3-4Yb2O3,以共掺杂Tm3+和Yb3+离子为上转换研究的对象。测量了该玻璃系统在980 nm LD激发下的上转换发光光谱,观察到很强的476 nm的蓝色荧光,它来源于Tm3+离子的1G43H6跃迁。同时,还有两个较弱的红色荧光来源于Tm3+离子的1G43H43F33H6跃迁。对上转换发光强度与泵浦电流关系曲线的拟合结果表明:此材料的蓝色上转换为三光子过程,红色上转换为双光子过程。  相似文献   

12.
基于铒镱共掺光纤光栅光学上转换的实验研究   总被引:2,自引:0,他引:2  
通过载氢和紫外光曝光在铒镱共掺光纤上制作了光纤光栅,当波长为976.4nm的半导体连续激光泵浦该光栅时,在只有4mW的抽运功率水平下,便可以观察到显著的上转换蓝绿光辐射,随泵浦功率的增加,辐射强度也在增加。通过单色仪和光电倍增管记录到了绿光、蓝光、紫光和紫外等多波长的上转换辐射光。利用显微镜数码相片证实在同种铒镱共掺光纤中没有上转换现象。  相似文献   

13.
采用高温熔融法和热处理工艺制作了含有GdF3纳米晶的氧氟微晶玻璃。在386 nm激发下,Dy3+掺杂氧氟微晶玻璃的发光强度明显增强,且蓝光对黄光的发光强度比逐渐增大,表明Dy3+已进入到GdF3纳米晶中。在980 nm激光器泵浦下,Er3+,Yb3+共掺氧氟微晶玻璃的上转换发光随着热处理温度的升高明显增强,Er3+的上转换发光出现明显的Stark分裂现象,这亦说明Er3+已进入到GdF3纳米晶相中。通过研究上转换发光强度与泵浦功率的关系,确定绿光上转换发光为双光子过程。  相似文献   

14.
杨海贵  戴振文  孙志伟 《中国物理》2006,15(6):1273-1277
The luminescence of Er^3+:YAlO3 in ultraviolet visible and infrared ranges under the 518 nm excitation of the multiples ^2H11/2 have been investigated. Ultraviolet (275 nm and 318 nm), violet (405 nm and 413 nm) and blue (474 nm) upconversion and infrared downconversion luminescence has been observed. By means of measuring the fluorescence decay curves and using the theory of rate equations, the luminescence kinetics was studied in detail and the processes of energy transfer upconversion (ETU) and excitation state absorption (ESA) were proposed to explain the upconversion phenomena.  相似文献   

15.
稀土离子掺杂的氧氟玻璃是一种新型上转换发光材料。制备了Tm^3/Yb^3+单掺、共掺的摩尔分数为n(SiO2)-0.30,n(PbF2)-0.50,n=(Al2O3)=0.15,n(AlF3)=(0.049-x),n(TmF3)=y,n(YbF3)=x(x=0,0.001,0.010,0.015,0.020,y=0,0.001)系统氧氟玻璃,研究了其上转换发光特性、分析了其上转换发光机理。研究发现,在970nm抽运光源激发下,Tm^3+单掺时没有可见光上转换发射;而加入Yb^3+后产生了强的蓝光(452nm,476nm)、红光(647nm)及近红外光(791nm)发射,分别对应如下辐射跃迁:^1D2→^3F4、^1G4→^3H6、^1G4→^3F4和^3H4→^3H6;且随着Yb^3+离子浓度的增加上转换发光增强。在970nm光源抽运下用Yb^3+敏化Tm^3+可以显著提高其上转换发光强度,且随着Yb^3+离子浓度的增加,增强了对抽运光源的吸收并提高了Yb^3+到T^3+”的能量转移几率,从而增强了上转换发光强度。  相似文献   

16.
The strong 479.1 nm blue cooperative upconversion luminescence of ytterbium Yb3+ ion doped oxyfluoride nanophase vitroceramics (Yb:FOV) is studied in this article. It is found that the 479.1 nm blue cooperative upconversion luminescence strength of Yb(5):FOV is 230 times greater than that of fluoride glass Yb(3):ZBLAN. The large enhancement on cooperative upconversion blue luminescence of this article results from the comprehensive improvement on the aspects of better coupled chance of the Yb3+-Yb3+ cluster, less cross-relaxation, better concentration contribution of Yb3+ activator, non-saturation, and better upconversion luminescence efficiency.  相似文献   

17.
Er3+掺杂重金属氧氟硅酸盐玻璃的上转换发光研究   总被引:4,自引:0,他引:4       下载免费PDF全文
研究了Er3+掺杂重金属氧氟硅酸盐玻璃的吸收光谱、上转换光谱和拉曼光谱,分析了重金属氧氟硅酸盐玻璃中Er3+的上转换发光机理. 结果表明:通过975nm的激光二极管激发,在室温下同时观察到蓝光(411nmj)、绿光(525和543nm)和红光(655nm),分别是由于Er3+离子2H9/2→4I15/2, 2H11/2→4I15/2, 4S3/2→4I15/2, 和4F9/2→4I15/2跃迁. 随Er2O3浓度的增加,蓝光、绿光和红光的发光强度都增强,上转换发光机理主要涉及能量转移和激发态吸收,强烈的绿 关键词: Er3+离子 重金属氧氟硅酸盐玻璃 上转换光谱 发光机理  相似文献   

18.
氟化锆基质材料中单掺Yb3+的上转换特性   总被引:1,自引:1,他引:0  
在众多的稀土掺杂氧化物、氟化物或氟氧化物基质材料的能量上转换研究当中,Yb^3 单独掺杂的能量上转换研究在国内报道的很少。这是因为,研究者们普遍都认为Yb^3 只是一种良好的敏化剂,主要起能量转移作用。采用固相合成法,稀土Yb单独掺杂ZrF4基质材料,在1200℃烧结合成了粉末样品。样品用功率为几mW的半导体红外激光980nm激发,肉眼就可看到上转换的明亮的红光。在实验室用功率为几十mW的半导体红外激光980nm激发,用光谱仪测量到红、绿、蓝及紫4个波段的上转换荧光光谱,其波峰在412,478,558,671nm波长处,实验反复验证,认为上转换来自Yb^3 的准能级向Yb^3 基态^2F7/2的跃迁。  相似文献   

19.
Ho3+/Yb3+/Tm3+ codoped LiNbO3 polycrystals exhibiting upconversion white-light under 980 nm excitation have been successfully fabricated by the high temperature solid-state reaction method. CIE coordinate of the Ho3+/Yb3+/Tm3+/LiNbO3 polycrystal is (0.34, 0.35), which is very close to the standard equal energy white-light illuminate (0.33, 0.33). Efficient green, red, and blue upconversion emissions have been observed. The luminescent decay dynamics are studied, and rate equations for the blue, green, and red emissions are set up to analyze the upconversion luminescence mechanism. The present results demonstrate that the competition between the linear decay and the upconversion process for the depletion of the intermediate excited states plays an important role in upconversion mechanism. The LiNbO3 with upconversion white-light will be a promising luminous material.  相似文献   

20.
Green, blue, violet and ultraviolet upconversion luminescence is reported at room temperature in a YAG: 10.5%Er3+ crystal pumped by one-colour (647 nm) and two-colour (647+618 nm) laser excitation. The upconversion mechanism was studied by means of time-resolved luminescence spectroscopy and the energy flow pathways are described. Based on the results it appears that energy transfer upconversion is the dominant contribution to the upconverted luminescence upon 647 nm excitation, and excited state absorption is the dominating mechanism upon 647+618 nm excitation.  相似文献   

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