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1.
Mechanisms of the compositional dependence of blue emission from Nd3+/Tm3+ co-doped Ge–Ga–S–CsBr chalcohalide glasses were investigated. The blue upconversion emissions (centered at 475 nm) due to the Tm3+: 1G4  3H6 transition decreased as the CsBr/Ga ratio in glasses while the other upconversion emissions from the Nd3+ ions increased. Changes in the local environment of rare-earth ions incurred by the CsBr addition significantly increased the excited state absorption within Nd3+ ions. This resulted in the decrease in the Nd3+  Tm3+ energy transfer rates that led to the large decrease in blue upconversion emission.  相似文献   

2.
Photoluminescence properties of Sm3+, Dy3+, and Tm3+-doped transparent oxyfluoride silicate glass ceramics containing CaF2 nanocrystals were reported. Emission bands of 4G5/2  6H5/2 (562 nm), 4G5/2  6H7/2 (598 nm), 4G5/2  6H9/2 (645 nm) and 4G5/2  6H11/2 (706 nm) for the Sm3+: glass and glass ceramic, with an excitation at 6H5/2  4F7/2 (402 nm) have been recorded. Of them, 4G5/2  6H7/2 (598 nm) has shown a bright orange emission. With regard to the Dy3+: glass, a bright fluorescent yellow emission at 575 nm (4F9/2  6H13/2) and blue emission at 481 nm (4F9/2  6H15/2) have been observed, apart from 662 nm (4F9/2  6H11/2) emission transition with an excitation at 386 nm (6H15/2  4I13/2 + 4F7/2) wavelength. Emission bands of 1G4  3F4 (650 nm) and 1G4  3H5 (795 nm) transitions for the Tm3+: glass and glass ceramic, with an excitation at 3H6  1G4 (467 nm) have been observed. Of them, 1G4  3F4 (650 nm) has shown bright red emission. Decay lifetime measurements were also carried out for all the observed Sm3+, Dy3+, and Tm3+-doped glass and glass ceramic emission bands.  相似文献   

3.
《Journal of Non》2007,353(16-17):1508-1514
This paper reports on the spectroscopic properties and energy transfer in Ga2O3–Bi2O3–PbO–GeO2 glasses doped with Tm3+ and/or Ho3+. From the optical absorption spectra of Tm3+, Judd–Ofelt intensity parameters, radiative transitions probabilities, fluorescence branching ratios, and radiative lifetimes have been calculated using Judd–Ofelt theory. The measured differential scanning calorimetry result shows that the glass exhibits excellent stability against devitrification with ΔT = 129 °C. The measured luminescence spectra show that the 3H4  3F4 transition of Tm3+ upon 808 nm laser diode excitation possess a broad full width at half-maximum of ∼126 nm. The maximum value calculated stimulated emission cross-section and the measured lifetime of 3H4 level from the 1.47-μm transition are ∼4.73 × 10−21 cm2 and ∼0.239 ms, respectively. It is noticed that codoping of Ho3+ could significantly enhanced the ratio of the intensity of 1.47–1.80 μm by energy transfer via Tm3+: 3F4  Ho3+: 5I7.  相似文献   

4.
《Journal of Non》2006,352(32-35):3598-3602
Thermal lens (TL) measurements were performed in tellurite glasses, 70TeO2–19WO3–7Na2O–4Nb2O5 (mol%), undoped, doped with Er3+ (1.19 × 1020 ions/cm3) and co-doped with Er3+ (1.19 × 1020 ions/cm3)/Tm3+ (1.56 × 1020 ions/cm3). The absolute nonradiative quantum efficiency (ϕ) was determined by the TL method. The ϕ values for Er3+/Tm3+-co-doped and Er3+-doped tellurite glasses were 0.98 and 0.74, respectively. Fluorescence spectra were performed at λe = 488 nm and used to estimate the fluorescence quantum efficiency (η) using the TL results. These values were compared with results obtained by Judd–Ofelt calculations.  相似文献   

5.
Energy-transfer excited upconversion luminescence in Ho3+/Yb3+- and Tb3+/Yb3+-codoped PbGeO3–PbF2–CdF2 glass and glass–ceramic under infrared excitation is investigated. In Ho3+/Yb3+-codoped samples, green (545 nm), red (652 nm), and near-infrared (754 nm) upconversion emission corresponding to the 5S2(5F4)  5I8, 5F5  5I8, and 5S2(5F4)  5I7 transitions, respectively, was observed. Blue (490 nm) emission assigned to the 5F2,3  5I8 transition was also detected. In the Tb3+/Yb3+-codoped system, bright UV–visible emission around 384, 415, 438, 473–490, 545, 587, and 623 nm, identified as due to the 5D3(5G6)  7FJ(J = 6, 5, 4) and 5D4  7FJ(J = 6, 5, 4, 3) transitions, was measured. The comparison of the upconversion process in glass ceramic and its glassy precursor revealed that the former samples present much higher upconversion efficiencies. The dependence of the upconversion emission upon pump power, and doping contents was also examined. The results indicated that successive energy-transfer between ytterbium and holmium ions and cooperative energy-transfer between ytterbium and terbium ions followed by excited-state absorption are the dominant upconversion excitation mechanisms herein involved. The viability of using the samples for three-dimensional solid-state color displays is also discussed.  相似文献   

6.
《Journal of Non》2007,353(16-17):1676-1680
Spectroscopic properties of Tm3+ in (1  x) (Ge0.25Ga0.10S0.65)–xBr (or CsBr) glasses (x = 0.0 and 0.1) were investigated. Emission properties of Tm3+ in 0.9(Ge0.25Ga0.10S0.65)–0.1Br glass were similar to those in Ge0.25Ga0.10S0.65 glass, while there was significant improvement when doped into 0.9(Ge0.25Ga0.10S0.65)–0.1CsBr glass. The lifetime of the Tm3+:3H4 level increased from 0.23 to 1.22 msec with 10 mol% CsBr addition. The presence of Cs+ facilitated the formation of [GaS3/2Br] units by donating an electron to the Ga tetrahedron, resulting in the homogeneous distribution of Br. In this way, Tm3+ ions have their local environment made of Br only. When Br ions were added instead of CsBr, [GaS(4−x)/2Br] units with x > 1 were formed and Tm3+ ions were surrounded by both S and Br, producing a high phonon environment.  相似文献   

7.
Er3+/Yb3+ co-doped transparent glass-ceramics containing Ca5(PO4)3F nano-crystals were prepared and their upconversion properties were investigated. Transparent glass-ceramics were obtained after heat treatment at the first crystallization temperature, TEM images showed that Ca5(PO4)3F nano-crystals of 10–20 nm in diameter precipitated uniformly in the glass matrix, which is similar to the result of those calculated by Scherrer equation. Comparing with the samples before heat treatment, high efficiency upconversion luminescence of Er3+ at 547 nm and 667 nm was observed in the glass-ceramics under 980 nm excitation, and the intensity of red emission showed different tendency to that of green emission after nano-crystals precipitation. The reasons for the highly efficient upconversion luminescence in glass-ceramics were discussed.  相似文献   

8.
The Eu3 +/Tb3 +/Tm3 + triply-doped glasses with the composition of CaO―Al2O3―B2O3―RE2O3 (RE = Eu,Tb,Tm) have been synthesized by melt quenching method. The photoluminescence of these Eu3 +/Tb3 +/Tm3 + triply-doped glasses (CaAlB:RE3 +) were studied and the emission spectra combining with blue, green and reddish orange bands were observed. Under 360 nm wavelength excitation the white light emission is achieved when the concentration (x) of Tm3 + in Ca0.931 ?xAlB:Eu3 +0.038,Tb3 +0.031,Tm3 +x glass is in the range of 0.0013-0.011 per mol matrix. In addition, the energy transfer (ET) between Tb3 + and Eu3 + ions in Eu3 +/Tb3 +/Tm3 + triply-doped glasses was validated and the electric dipole–dipole interaction is responsible for the ET process of Tb3 +  Eu3 + at low concentrations. Hence, the Eu3 +/Tb3 +/Tm3 + triply-doped aluminoborate glass could be a potential candidate for white LEDs.  相似文献   

9.
《Journal of Non》2007,353(13-15):1251-1254
The local structures around Tm3+ in Ge0.25Ga0.10S0.65 and 0.90 (Ge0.25Ga0.10S0.65)  0.10CsBr glasses were investigated using Extended X-ray absorption fine structure (EXAFS) spectroscopy. In Ge0.25Ga0.10S0.65 glass, Tm3+ ions are surrounded by approximately seven S ions. Addition of 10 mol% CsBr resulted in significant changes in the EXAFS spectrum of Tm3+ ions due to the changes in the local structure surrounding Tm3+ ions. The first-nearest coordination shell around Tm3+ ion is predominantly composed of about six Br ions in 0.90 (Ge0.25Ga0.10S0.65)  0.10CsBr glass.  相似文献   

10.
Transparent SiO2:Li2O:Nb2O5 glass doped with Tm3+ has been prepared by the sol–gel method, and heat-treated in air (HT) at temperatures between 500 and 800 °C. X-ray diffraction (XRD) patterns and Raman spectroscopy show SiO2 and LiNbO3 phases in samples HT above 650 °C, and a NbTmO4 phase for T > 750 °C. The XRD SEM analysis show increasing particle size and number with the increase of HT temperature. Intra-4f12 transitions due to Tm3+ ion dispersed in the matrix are observed in samples with T > 650 °C. The luminescence is dominated by the 1G4  3F4 (~650 nm), 1D2  3F3 (~780 nm), 3H4  3H6 (~800 nm), 3H5  3H6 (~1200 nm) and 3H4  3F4 (~1500 nm) transitions under resonant excitation to the ion levels.  相似文献   

11.
《Journal of Non》2006,352(52-54):5469-5474
The lifetimes of 3P0 and 1D2 levels of Pr3+ were measured in ZBLAN glasses of composition in mol% 53ZrF4–20BaF2–(4  x)LaF3–3AlF3–20NaF–xPrF3 (x = 0.1, 0.5, 1, and 3) by resonant excitation. Energy transfer observed between Pr3+ ions was analyzed by means of the Inokuti–Hirayama theory. The non-exponential dependence of the 1D2 decay on Pr3+ concentration indicates that dipole–dipole interaction between Pr3+ is the main process. Orange-to-blue upconversion luminescence was observed and described by two-ion energy transfer mechanism. The temporal evolution of upconversion luminescence was characterized by rise and decay times related to the dopant concentration.  相似文献   

12.
Chalcohalide glass with a composition of 65GeS2–25Ga2S3–10CsI (in mol%) doped with 0.6 wt% Tm3+ ions was prepared by conventional melt–quench method. By heat treating the precursor glass at 20 °C above its glass transition temperature Tg for different durations, IR transparent glass ceramics were obtained. X-ray diffraction (XRD) and scanning electron microscope (SEM) showed that Ga2S3 crystallites were precipitated after heat treatment and their grain sizes were in nano-scale and increased with the elongation of heat treated time. Mid-IR luminescence properties of the glass and transparent glass ceramic samples were investigated. The emissions at 2.3 and 3.8 μm corresponding to optical transitions of 3H4  3H5 and 3H5  3F4 of Tm3+ ions were significantly enhanced by the presence of Ga2S3 nanocrystals and reached a maximum after 8 hours treatment.  相似文献   

13.
In this work a transparent bulk glass with the mol% composition 76TeO2·10ZnO·9.0PbO·1.0PbF2·3.0Na2O doped with Tm3 + has been synthesized. Results of differential thermal analysis (DTA) indicate a high thermal stability and low tendency to crystallization of this glass. The refractive indices at different wavelengths, the Urbach energy, the optical energy gap, the Sellmeier gap energy and the dispersion energy have been estimated. Spectroscopic quality factor of Tm3 + was evaluated from optical absorption spectra. Electric and magnetic dipole transition probabilities, branching ratios, and radiative lifetimes of several excited states of Tm3 + have been predicted using calculated intensity Judd–Ofelt parameters. The classical McCumber theory has been applied to evaluate the emission cross-sections for 3F4  3H6 transition around 1.8 μm. This study shows that TZPPN glass doped with Tm3 + ions is a promising candidate for laser applications.  相似文献   

14.
《Journal of Non》2006,352(32-35):3636-3641
Sodium phosphoniobate glasses with the composition (mol%) 75NaPO3–25Nb2O5 and containing 2 mol% Yb3+ and x mol% Er3+ (0.01  x  2) were prepared using the conventional melting/casting process. Er3+ emission at 1.5 μm and infrared-to-visible upconversion emission, upon excitation at 976 nm, are evaluated as a function of the Er3+ concentration. For the lowest Er3+ content, 1.5 μm emission quantum efficiency was 90%. Increasing the Er3+ concentration up to 2 mol%, the emission quantum efficiency was observed to decrease to 37% due to concentration quenching. The green and red upconversion emission intensity ratio was studied as a function of Yb3+ co-doping and the Er3+–Er3+ energy transfer processes.  相似文献   

15.
《Journal of Non》2007,353(13-15):1383-1387
The spectroscopic properties of Er3+-doped alkali tellurite TeO2–Na2O glasses are investigated. Infrared-to-visible upconversion emission bands are observed at 410, 525, 550 and 658 nm using 797 nm excitation wavelength. These bands are assigned to the 2H9/2  4I15/2, 2H11/2  4I15/2, 4S3/2  4I15/2 and 4F9/2  4I15/2 transition, respectively. The power dependence study reveals that the 2H9/2  4I15/2 transition involves a three-step process while the other upconversion transitions involve only two steps. An excitation with 532 nm wavelength, two upconversion bands are observed in the UV region at 380 and 404 nm in addition to bands in the visible region at 410, 475, 525, 550, 658 and 843 nm. These bands are ascribed to 4G11/2  4I15/2, 2P3/2  4I13/2, 2H9/2  4I15/2, 2P3/2  4I11/2, 2H11/2  4I15/2, 4S3/2  4I15/2, 4F9/2  4I15/2 and 4S3/2  4I13/2 transition, respectively. Increasing Er3+ concentration leads to a rapid growth in the intensity of red emission relative to that for the green emission. An explanation for this observation has been suggested. The temperature dependence profile for the two thermally coupled levels (2H11/2, 4S3/2) shows that they can be used for measuring the temperature.  相似文献   

16.
《Journal of Non》2006,352(32-35):3530-3534
Glass fibers were drawn from GeO2–PbO–Bi2O3 and GeO2–PbO melts previously doped with Er3+. From the differential thermal analysis curve, the glass transition temperature was determined to be 420 °C, and no crystallization peak was observed in the temperature range of that analysis, indicating stability with regard to devitrification. Raman spectroscopy was performed to characterize the structure of the glasses, which exhibited large transmission windows (0.5–5.0 μm) and large refractive indices (∼2.0). Infrared to visible upconversion of Er3+ was observed in the fibers. The visible emissions were related to the upconverted green emissions at about 530 nm (2H11/2  4I15/2) and 550 nm (4S3/2  4I15/2), and red emission at 668 nm (4F9/2  4I15/2) under 980 nm excitation. The infrared transition (4I13/2  4I15/2) was peaked at 1.53 μm. The results obtained suggest that the fibers exhibit the same structures as the parent glasses and can be used in upconversion fiber optical devices.  相似文献   

17.
《Journal of Non》2006,352(21-22):2090-2095
Novel oxyfluoride glasses SiO2–Al2O3–Na2O–ZnF2 doped with Er3+ and Er3+/Yb3+ were fabricated. The optical properties of the synthesized glasses were experimentally and theoretically investigated in detail. The experimental and calculated oscillator strengths of Er3+ were determined by measurement of the absorption spectrum of Er3+-singly doped glass. According to the Judd–Ofelt theory, the experimental intensity parameters were calculated, from which the radiative transition probabilities, fluorescence branching ratios and radiative lifetimes were obtained. The fluorescence lifetime and quantum efficiency for the near-infrared emission of Er3+-singly doped glass were determined to be 3.0 ms, and 42%, respectively. Visible upconversion luminescence was observed under 980 nm diode laser excitation. The dependence of the upconversion emission intensity upon the excitation power was examined, and the upconversion mechanisms are discussed.  相似文献   

18.
We report silver metal enhanced near-IR and infrared-to-visible upconversion luminescence in Tm3+ doped 70GeS2–10Ga2S3–20CsCl (in mol. %) glasses. The metal embedded glasses are prepared under controlled crystallization. Upon 808 nm excitation three fold enhancement of emissions is observed in the visible (446 nm, 496 nm, and 532 nm) and near infrared (1230 nm, 1450 nm and 1480 nm) regions. The possible mechanism responsible for the enhanced luminescence is discussed.  相似文献   

19.
《Journal of Non》2007,353(18-21):1748-1754
Efficient infrared-to-visible conversion is reported in thin film nano-composites, with composition 90% SiO2–10% TiO2, fabricated by a spin-coating sol–gel route and co-doped with Er3+ Yb3+ and with Nd3+:Yb3+ ions. The conversion process is observed under 808 nm laser diode excitation and results in the generation of green (526 and 550 nm) and red (650 nm) emissions: from the former, and blue (478 nm) and green (513 and 580 nm) emissions from the latter. The main mechanism that allows for up-conversion is ascribed to energy transfer among Er3+ and Yb3+ ions in their excited states. Up-conversion efficiency for red emission predominates in samples doped with Er3+:Yb3. The results illustrate the large potential of this class of materials for photonic applications in optoelectronics devices.  相似文献   

20.
W.J. Zhang  Q.J. Chen  Q.Y. Zhang  Z.H. Jiang 《Journal of Non》2011,357(11-13):2278-2281
Transparent glass-ceramics containing MF2(MF3):Ho3+,Tm3+ (M = Ca, Ba, and La) nanocrystals have been prepared by melt quenching and subsequent thermal treatment. X-ray diffraction and transmission electron microscopy analysis confirmed the precipitation of MF2 (MF3) nanocrystals among the glass matrix. Energy-dispersive X-ray spectroscopy results evidenced the incorporation of Tm3+ and Ho3+ into the MF2 nanocrystals. Intense 2.0 μm emission originating from the Ho3+: 5I7  5I8 transition was achieved upon excitation with 808 nm laser diode. A large ratio of the forward Tm3+ → Ho3+ energy transfer constant to that of the backward process indicated high efficient energy transfer from Tm3+ (3F4) to Ho3+ (5I7), and benefited from the reduced ionic distances of Tm3+–Tm3+ and Tm3+–Ho3+ pairs and low phonon energy environment with the incorporation of rare earth ions into the precipitated MF2 nanocrystals. The results indicate that oxyfluoride glass-ceramic is a promising candidate for 2.0 μm laser.  相似文献   

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