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1.
Different up-conversion luminescent spectra of Er3+ ions were observed in the oxyfluoride glass-ceramics.The ratio of two fluorides in the original compositions was modified in order to form different nanocrystals.The intensity of up-conversion luminescence increased sharply when the ratio of PbF2 and CdF2 was 40:10.The data of differential thermal analysis and X-ray diffraction were used to explain the optimization fluoride ratio. The intensity of up-conversion luminescence is not only decided by the crystallizability but also mainly related with the stoichiometric proportion of fluoride nanocrystals in the glass-ceramics.  相似文献   

2.
3.
Quantum-well semiconductor structures with superlattice barriers and reduced recovery time of absorption are designed and manufactured. A saturable absorption mirror based on such a structure is used in the Yb3+:KY(WO4)2 laser. The mode locking at a repetition rate of 70 MHz yields an almost bandwidth-limited pulse with a duration of about 115 fs. The maximum mean power (1.57 W) is comparable with a CW power of 1.62 W, which indicates a relatively low level of nonsaturable loss in the saturable absorption mirror.  相似文献   

4.
Photoluminescence properties of Gd2O3: Er3+, Yb3+ upconversion inverse opal photonic crystals were investigated. The photoluminescence spectra of the inverse opal show strong dependence on upconversion emission intensity and the corresponding photonic band-gaps of the inverse opal. Significant suppression of the green or red upconversion emission was observed if the photonic band-gap overlaps with the Er3+ ions emission band. The color purity of the red or green emission was improved in the inverse opal by the suppression of green or red UC emission. We believe that the present work will be valuable for not only the foundational study of upconversion emission modification but also new optical devices in upconversion lighting and display.  相似文献   

5.
Infrared-to-visible upconversion fluorescence of Er3+/Yb3+ co-doped lithium-strontium-lead-bismuth (LSPB) glasses for developing potential upconversion lasers has been studied under 975-nm excitation.Based on the results of energy transfer efficiency and upconversion spectra, the optimal Yb3+-Er3+ concentration ratio is found to be 5∶1. Intense green and red emissions centered at 525, 546, and 657 nm,corresponding to the transitions 2H11/2→4I15/2, 4S3/2→4I15/2, and 4F9/2 → 4I15/2, respectively, were observed. The quadratic dependence of the 525-, 546-, and 657-nm emissions on excitation power indicates that a two-photon absorption process occurs under 975-nm excitation. The high-populated 4I11/2 level is supposed to serve as the intermediate state responsible for the upconversion processes. The intense upconversion luminescence of Er3+/Yb3+ co-doped LSPB glasses may be a potentially useful material for developing upconversion optical devices.  相似文献   

6.
通过固相反应法制备了Er3+/Yb3+共掺杂ZrO2-Al2O3粉末的样品,并对样品在980nm激光激发下的上转换发光特性进行了研究.从发射光谱可以发现,在可见光范围内有3个强的发光带,一个位于654nm附近的红光带和两个分别位于545nm、525nm附近的绿光带,分别对应于Er3+离子的以下辐射跃迁:4F9/2→4I15/2、4S3/2→4I15/2、2H11/2→4I15/2.其中又以Er3+离子的4F9/2→4I15/2跃迁产生的红色荧光辐射最强.对其上转换发光机制进行了分析,发现这三个发光过程都是双光子过程.对样品粉末进行了XRD检测,发现ZrO2主要以立方相为主,并且计算得到了这种立方结构的晶格常数.Al2O3固溶于ZrO2中,Al3+嵌入ZrO2后产生氧空位,导致ZrO2晶体的对称性降低,这种结构变化更有利于提高上转换效率,即上转换发光强度增强.  相似文献   

7.
We present a highly efficient, diode-pumped, femtosecond Yb3+:KY(WO4)2 (Yb:KYW) laser operating at a 1.024 GHz repetition rate. The output was centered at a wavelength of 1042 nm and had a bandwidth of 3.8 nm, leading to transform-limited pulses with durations of 278 fs determined by fringe-resolved autocorrelation measurements. The optical-to-optical conversion efficiency and slope efficiency were 61% and 69%, respectively, and the relative intensity noise was <0.1%.  相似文献   

8.
测试了Er/Yb∶KY(WO4)2晶体在室温下3个轴Ng,Np,Nm方向上的吸收光谱,分析比较光谱特性,并计算出各能级跃迁的吸收截面,其中沿Np轴方向有最强的吸收和较大的吸收截面,这有利于激光上能级的粒子数堆积,增大跃迁几率,加强荧光输出。由于掺入Yb3+离子,晶体在980 nm附近有很强的吸收和较大的半峰宽。该晶体在980 nm激光泵浦下有上转换绿光和红光,3个晶轴Np,Ng,Nm轴方向的上转换荧光,波峰位置相差甚微,强弱区别明显,且呈现的各向异性,其中Np方向最强。  相似文献   

9.
Broadband and upconversion properties were studied in Er3+/Yb3+ co-doped fluorophosphate glasses. Large Ω6 and Sed/(Sed+Smd) values and the flat gain profile over 1530-1585 nm indicate the good broadband properties of the glass system. And a premise of using Ω6 as a parameter to estimate the broadband properties of the glasses is proposed for the first time to our knowledge. Results showed that fluorescence intensity, upconversion luminescence intensity, the intensity ratio of red/green light (656 nm/545 nm) are closely related to the Yb3+:Er3+ ratio and Er3+ concentration, and the corresponding calculated lifetime of 4F9/2 and 4S3/2 states for red and green upconversion samples proves this conclusion. The upconversion mechanism is also discussed.  相似文献   

10.
采用熔盐法从K2 WO4助熔剂体系生长出尺寸为 4 5mm的Nd3 :Er3 :KY(WO4) 2 透明晶体。从晶体中切割出Ф3× 11 9mm的激光器件 ,测量了晶体的紫外 -近红外的吸收光谱 ,从吸收光谱图上可以看到 ,晶体存在着 974 88nm ;80 1 0 (798 12 ,80 3 95 )nm ;74 8 5 (75 3 5 ,74 3 4 9)nm ;6 5 3 6 1nm ;5 86 6 5nm ;5 18 6(5 4 5 0 3,5 2 1 32 ,4 89 35 )nm ;4 5 2 80nm ;4 0 7 81nm ;36 7 2 2 (377 2 4 ,36 6 4 ,35 8 0 2 )nm九个吸收峰带 ,对各个吸收峰带按照Er3 和Nd3 离子的能级跃迁进行了归属。同时采用Edinburgh InstrumentF92 0荧光光谱仪在室温下对晶体进行了荧光测试研究。研究结果表明 ,共掺Nd3 离子可以增强Er3 :KY(WO4) 2 对半导体激光器泵浦源 (80 0nm)的吸收。  相似文献   

11.
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   

12.
The nonlinear refractive indices of Yb3+: KY(WO4)2 and Yb3+:YVO4 laser crystals are characterized using a Z-scan technique at a wavelength of 1.08 μm for different polarizations. The results reveal that the nonlinear refractive index of Yb3+:YVO4 is superior to that of Yb3+:KY(WO4)2 and is found to be 1.9×10-15 cm2/W and 1.5×10-15 cm2/W for E⊥c and E∥c polarizations, respectively. PACS 42.65.Hw; 42.55.Rz; 42.65.Re; 42.70.Hj  相似文献   

13.
Gd2O3: Er3+/Y b3+ nanowires were prepared by a hydrothermal method. The upconversion luminescence was studied with 978-nm excitation. Ultraviolet and blue upconversion luminescence in which thermalization processes were involved, green and red upconversion luminescence were observed respectively. We analyzed the mechanism of upconversion luminescence. According to the ratio of 2 H11/24I15/2 emission intensity to 4 S3/24I15/2 emission intensity, the temperature of the sample exposed to radiation of 978-nm laser was given.  相似文献   

14.
The thermal stability, Raman spectrum and upconversion properties of Tm3+/Yb3+ co-doped new oxyfluoride tellurite glass are investigated. The results show that Tm3+/Yb3+ co-doped oxyfluoride tellurite glass possesses good thermal stability, lower phonon energy, and intense upconversion blue luminescence. Under 980-nm laser diode (LD) excitation, the intense blue (475 nm) emission and weak red (649 nm) emission corresponding to the 1G4 → 3H6 and 1G4 → 3F4 transitions of Tm3+ ions respectively,were simultaneously observed at room temperature. The possible upconversion mechanisms are evaluated.The intense blue upconversion luminescence of Tm3+/Yb3+ co-doped oxyfluoride tellurite glass can be used as potential host material for the development of blue upconversion optical devices.  相似文献   

15.
Tm3+/Yb3+共掺碲铅锌镧玻璃的能量传递和上转换发光   总被引:1,自引:0,他引:1       下载免费PDF全文
制备了Tm3+/Yb3+共掺TeO2-PbO-ZnO-La2O3玻璃,研究了玻璃红外吸收光谱和980 nm激光抽运下上转换发光光谱,分析了上转换发光机制.基于Tm3+和Yb3+的能级图及上转换机制建立了速率方程,得出了稀土离子各能级的粒子数分布密度以及Tm3+与Yb3+之间的能量转移系数Cbi(i=0,1,3).结果表明,随着PbO加入,Yb3+:2F5/2与Tm3+:3H4间的能量转移不断增加,上转换蓝光的发光强度明显增强.  相似文献   

16.
Nd3+, Tm3+ and Yb3+ co-doped NaYF4 upconversion (UC) material was synthesized by the hydrothermal method. The structure of the sample was characterized by the X-ray diffraction, and its UC luminescence properties were investigated in detail. Under the 980 nm semiconductor laser excitation, its UC spectra exhibited distinct emission peaks at 451 nm, 475 nm and 646 nm respectively. On the basis of the comparison of UC spectra between NaYF4:Nd3+,Tm3+,Yb3+ and NaYF4:Tm3+,Yb3+, it was indicated that the existence of Nd3+ ion enhanced the blue emission intensity. The law of luminescence intensity versus pump power proved that the blue emission at 475 nm, and the red emission at 646 nm were the two-photon processes, while the blue emission at 451 nm was a three-photon process.  相似文献   

17.
Upconversion luminescence of Er3+/Yb3+-doped halide tellurite glass is investigated experimentally upon 976-nm excitation. Three intense emissions centered at 525, 545 and 655 nm owing to the transitions 2H11/2→4I15/2,4S3/2→4I15/2 and 4F9/2→4I15/2, respectively, are observed when pumping power is as low as 20 mW. The upconversion mechanisms and power dependent intensities are discussed. The high-populated 4I11/2 level is supposed to serve as the intermediate state responsible for the upconversion processes.  相似文献   

18.
Yb3+掺杂KY(WO4)2激光晶体生长、结构与光谱分析   总被引:2,自引:0,他引:2       下载免费PDF全文
采用顶部籽晶提拉法(TSSG)生长出Yb:KY(WO4)2(Yb:KYW)激光晶体.对预烧后的原料及晶体进行了XRD分析,结果表明,分别在920℃和600℃预烧8h后的熔质和助熔剂基本上形成一相,抑止了实验中的挥发问题;所生长的晶体为β-Yb:KYW,计算其晶格常数为a=1.063nm,b=1.034nm,c=0.755nm,β=130.75°.测得不同厚度样品的吸收光谱,结果表明样品在933nm和981nm有较强的吸收峰,计算出主峰981nm的吸收截面σabs=5.34×10-20cm2.测得样品的荧光光谱,计算出主峰1030nm受激发射截面σem=3.1×10-20cm2,并估算其荧光寿命为0.56ms,与实测值0.60ms吻合.计算出激发态最小粒子数(β)、饱和抽运强度(Isat)和最小抽运强度(Imin),通过与其他掺Yb3+晶体比较,结果表明Yb:KYW晶体的Imin(0.24kW/cm2)很小.  相似文献   

19.
The nonlinear refractive index n2 of Yb3+:KY(WO4)2 crystal has been measured using picosecond Z-scan technique. The magnitude of n2 was found to be 8.7 × 10–16 cm2/W at wavelength of 1.08 m. The numerical modeling based on fluctuation model showed a great potential of this crystal as active medium for Kerr-lens mode-locking.  相似文献   

20.
Up-conversion phosphors BaLa2ZnO5 co-doped with Ho3+/Yb3+ were synthesized by high temperature solid-state reaction method. The phase composition of the phosphors was characterized by X-ray diffraction (XRD). The structure of BaLa2ZnO5: 0.75% Ho/15% Yb phosphor was refined by the Rietveld method and results showed the decreased unit cell parameters and cell volume after doping Ho3+ and Yb3+, indicating Ho3+ and Yb3+ have successfully replaced La3+. Under the excitation of 980 nm diode laser, the strong green and weak red up-conversion emissions centered at 548 nm, 664 nm and 758 nm were observed, which originating from 5S2, 5F25I8, 5F45I8 and 5S2, 5F25I7 transitions of Ho3+ ions, respectively. The optimum doping concentrations of Ho3+ and Yb3+ were determined to be 0.75% and 15%, and the corresponding Commission International de L'Eclairage (CIE) coordinates are calculated to be x=0.298 and y=0.692. The related UC mechanism of Ho3+/Yb3+ co-doped BaLa2ZnO5 depending on pump power was studied in detail. The results indicate that BaLa2ZnO5: Ho3+/Yb3+ can be an effective candidate for up-conversion yellowish-green light emitter.  相似文献   

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