11 results on '"Xu, Xiaodong"'
Search Results
2. Growth, crystal structure and optical study of Tm:LuYSiO5 single crystal.
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Di, Juqing, Xu, Xiaodong, Xia, Changtai, Zhou, Dahua, Sai, Qinglin, and Xu, Jun
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CRYSTAL growth , *CRYSTAL structure , *OPTICAL properties of metals , *THULIUM , *LUTETIUM compounds , *SINGLE crystals , *ULTRASHORT laser pulses , *ABSORPTION spectra - Abstract
Highlights: [•] Spectroscopic properties and crystal growth of Tm:LYSO single crystal were studied for the first time. [•] The large absorption and emission cross-section and broad FWHM make Tm:LYSO a promising media for tunable and ultrashort pulses. [•] The J–O parameters and gain spectra reveal that the excellent properties for laser applications. [Copyright &y& Elsevier]
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- 2014
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3. Crystal growth and optical properties of LuYAG:Ce single crystal
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Di, Juqing, Xu, Xiaodong, Xia, Changtai, Li, Dongzhen, Zhou, Dahua, Wu, Feng, and Xu, Jun
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CRYSTAL growth , *OPTICAL properties of yttrium aluminum garnet , *SINGLE crystals , *CRYSTAL optics , *LUTETIUM , *X-ray diffraction , *COMPARATIVE studies , *CRYSTAL structure - Abstract
Abstract: Crystals of Ce3+-doped (Lu x Y1−x )3Al5O12 (LuYAG) have been grown and studied by X-ray powder diffraction, emission spectroscopy, excitation spectroscopy and X-ray excited fluorescence spectroscopy. The X-ray powder diffraction pattern revealed that the as-grown LuYAG:Ce crystal possessed the garnet structure. Compared with Ce3+-doped Y3Al5O12 (YAG), the absorption bands associated with the 4f–5d transition shifted to shorter wavelengths, the emission band that originated from a transition from the lowest 5d level to the 2F ground state of the Ce3+ ions shifted to the blue, which was probably due to a larger Stokes shift of the emission, and the reduction of relative intensity of antisite defect emission in the X-ray excited fluorescence spectra revealed that introducing Lu ions into YAG could reduce the antisite defect. [Copyright &y& Elsevier]
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- 2012
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4. Shape-controlled synthesis of single-crystalline cupric oxide by microwave heating using an ionic liquid
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Xu, Xiaodong, Zhang, Meng, Feng, Jing, and Zhang, Milin
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CRYSTALLINE polymers , *MICROWAVE heating , *IONIC liquids , *NANOSTRUCTURES - Abstract
Abstract: Cupric oxide (CuO) with leaf-like, chrysanthemum-like and rod shapes have been synthesized by microwave-assisted approach using an ionic liquid 1-n-butyl-3-methyl imidazolium tetrafluoroborate ([BMIM]BF4). By controlling the concentration of [BMIM]BF4 and reaction time, shape transformation of CuO nanostructures could be achieved in a short period of time. The crystal structure and morphology of products were characterized by XRD, TG, FESEM/EDS, and TEM/SAED. A possible mechanism for the shape transformation of CuO nanostructures was proposed. In addition, UV–vis spectra were employed to estimate the band gap energies of the nanosized semiconductors. [Copyright &y& Elsevier]
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- 2008
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5. Enhanced 2.8 μm emission of Ho,Pr:CaYAlO4 crystal.
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Yang, Chuang, Liu, Jian, Wang, Zebin, Chen, Peng, Song, Qingsong, Xu, Jie, Liu, Peng, Wei, Yong, Xue, Yanyan, Xu, Xiaodong, Lebbou, Kheirreddine, Buchvarov, Ivan, and Xu, Jun
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CRYSTALS , *ABSORPTION spectra , *MOLECULAR spectra , *CRYSTAL structure , *ION emission , *PRASEODYMIUM , *HOLMIUM - Abstract
Ho,Pr:CaYAlO 4 (Ho,Pr:CYA) crystal doped with 1 at.% Ho3+ and 0.1 at.% Pr3+ was successfully grown using the Czochralski method. Polarized absorption spectra, emission spectra, and fluorescence lifetime measurements were performed. The impact of Pr3+ co-doping on the ∼3 μm emission of Ho3+ ions was analyzed. The energy transfer efficiency from Ho3+:5I 7 to Pr3+:3F 2 energy level was calculated to be 60.66 %, indicating that Pr3+ effectively mitigated the self-termination effect in Ho,Pr:CYA crystals. The absorption cross-section at 645 nm was found to be 1.53 × 10−20 cm2 for σ polarization and 2.62 × 10−20 cm2 for π polarization. The emission cross-section at 2842 nm was calculated to be 0.86 × 10−20 cm2 for σ polarization and 1.33 × 10−20 cm2 for π polarization at 2908 nm, with a full width at half maximum (FWHM) of 139 nm and 88 nm, respectively. The fluorescence lifetimes of the 5I 6 and 5I 7 levels were measured to be 0.17 ms and 2.01 ms, respectively. These results collectively suggest that Ho,Pr:CYA crystals hold great potential as a candidate for 2.8 μm laser applications. • Ho3+,Pr3+ co-doped CaYAlO 4 crystal was grown by the Czochralski method. • The crystal structure, polarized absorption and emission spectra were investigated. • The intensity parameters were obtained using J-O theory. [ABSTRACT FROM AUTHOR]
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- 2024
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6. Yb:CALYO shaped crystal fibers: Growth and spectroscopic characterization.
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Wang, Zebin, Liu, Jian, Chen, Peng, Xu, Jie, Guo, Jun, Song, Qingsong, Wei, Yong, Liu, Peng, Wang, Xiaodan, Xu, Xiaodong, Xu, Jun, and Lebbou, Kheirreddine
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CRYSTAL growth , *CRYSTAL whiskers , *CRYSTAL structure - Abstract
Yb:CaYAlO 4 (Yb:CALYO) shaped crystal fibers with different Yb3+ doping concentration were successfully grown by the micro-pulling-down (μ -PD) method. The effect of the Yb3+ concentration on the structure, absorption, emission and lifetime was systematically studied. The strongest absorption peaks of Yb:CALYO crystal fibers are located at 977 nm for σ and π polarization. The micro-photoluminescence indicate that Yb3+ ions in CALYO single crystal fiber grown by the μ -PD method distributed evenly across a cross-section. The emission cross-section of 5 at.% Yb:CALYO crystal fiber was calculated to be 0.86 × 10−20 and 1.08 × 10−20 cm2 at 983 nm for σ and π polarizations. Benefited from the disordered structrure of CaYAlO 4 crystal, the full width at half maximum (FWHM) at 978 nm was 68.9 nm and 80.9 nm, respectively. The fluorescence lifetime of 2F 5/2 energy level of Yb:CALYO crystal fibers with concentration of 0.5 at.%, 1 at.%, 2 at.% and 5 at.% was calculated to be 435 μs, 484 μs, 514 μs and 453 μs, respectively. The experimental results show that Yb:CALYO crystal fiber is a potential laser medium for ultrashort laser operation. • Yb:CaYAlO 4 shaped crystal fibers were grown by the micro-pulling down method. • The crystal structure, polarized spectra were investigated. • The effect of Yb3+ concentration on the spectroscopic properties was evaluated. [ABSTRACT FROM AUTHOR]
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- 2024
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7. Growth, polarized spectroscopy and high-performance laser operation of a novel mixed Tm:CaY0.9Lu0.1AlO4 crystal.
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Bian, Kaiting, Liu, Jian, Song, Qingsong, Xu, Jie, Guo, Jun, Li, Dongzhen, Liu, Peng, Xue, Yanyan, Xu, Bin, Wang, Xiaodan, Xu, Xiaodong, Xu, Jun, and Lebbou, Kheirreddine
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LASER spectroscopy , *MIXED crystals , *CRYSTAL structure , *SINGLE crystals , *ABSORPTION spectra - Abstract
Tm3+-doped CaY 0.9 Lu 0.1 AlO 4 single crystal was successfully grown by the Czochralski method. The crystal structure, polarized absorption spectra and polarized emission spectra of Tm:CaY 0.9 Lu 0.1 AlO 4 crystals were investigated. By using the Judd–Ofelt approach, the intensity parameters Ω 2,4,6 , spontaneous transition rate, branching ratios and radiative lifetimes were calculated. Diode-end-pumped continuous-wave Tm:CaY 0.9 Lu 0.1 AlO 4 lasers have also been investigated by establishing a simple and compact plane-concave cavity with four differently coated output couplers. Four different lasing wavelengths at about 2029 nm, 2000 nm, 1966 nm and 1888 nm have been achieved with maximum output power and slope efficiency of (1.98 W, 15.1%), (5.89 W, 46.2%), (6.92 W, 54.9%) and (5.54 W, 44.7%), respectively. The results in regard to the broad emission spectra and good laser performance show that the Tm:CaY 0.9 Lu 0.1 AlO 4 mixed crystal could be very promising for broadband tunable and/or femtosecond ultrafast laser generation in the important 2-μm spectral region. • Tm:CaY 0.9 Lu 0.1 AlO 4 crystal was grown by the Czochralski method. • The crystal structure, polarized spectra were investigated. • The maximum output power of 6.92 W with slope efficiency 54.9% was achieved. [ABSTRACT FROM AUTHOR]
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- 2023
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8. Spectroscopic and laser properties of Tm:CNGG crystals grown by the micro-pulling-down method.
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Xue, Yanyan, Li, Na, Wang, Donghai, Wang, Qingguo, Liu, Bin, Song, Qingsong, Li, Dongzhen, Xu, Xiaodong, Gu, Hongan, Qin, Zhipeng, Xie, Guoqiang, Wang, Zhanshan, and Xu, Jun
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SEMICONDUCTOR lasers , *CRYSTALS , *SINGLE crystals , *FLUORESCENCE spectroscopy , *CONTINUOUS wave lasers , *CRYSTAL structure , *ABSORPTION spectra - Abstract
Tm3+-doped calcium niobium gallium garnet (Tm:CNGG) single crystals have been successfully grown by the micro-pulling-down (μ-PD) method. The crystal structure, absorption spectra, fluorescence spectra and lifetimes of Tm:CNGG crystals were investigated. The absorption and emission bandwidths of Tm:CNGG crystals are larger than those of other Tm3+ doped garnet crystals, which will be beneficial for laser diode (LD) pumping and ultrashort pulse generation. Additionally, continuous wave (CW) laser operation around 2 μm was achieved in the 2.0 at.% Tm:CNGG crystal by LD pumping. [ABSTRACT FROM AUTHOR]
- Published
- 2019
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9. Spectroscopic properties of Eu:Bi4Ge3O12 single crystal grown by the micro-pulling-down method.
- Author
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Li, Na, Xue, Yanyan, Wang, Donghai, Liu, Bin, Guo, Chao, Song, Qingsong, Xu, Xiaodong, Liu, Junfang, Li, Dongzhen, Xu, Jun, Xu, Zian, and Xu, Jiayue
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EUROPIUM , *BISMUTH compounds , *SINGLE crystals , *ABSORPTION , *CRYSTAL structure - Abstract
Abstract Eu3+-doped Bi 4 Ge 3 O 12 (BGO) single crystal with the size of Ø2 × 83 mm3 was successfully grown by the micro-pulling-down method. The absorption cross section, emission cross section and Judd–Ofelt analysis of Eu:Bi 4 Ge 3 O 12 (Eu:BGO) were reported for the first time. The absorption cross-section is 1.03 × 10−20 cm2 with full-width at half-maximum of 3.1 nm at around 393 nm. The spectroscopic intensity parameter Ω t (t = 2,4,6), radiative transition probabilities, branching ratios and radiative lifetime were obtained, respectively. Furthermore, the stimulated emission cross-section centered at 611 nm was calculated to be 6.32 × 10−21 cm2. The fluorescence lifetime of 5D 0 level was obtained to be 1.51 ms. The results indicate that Eu: BGO single crystal could be a potential laser host in the visible range. [ABSTRACT FROM AUTHOR]
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- 2019
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10. Optical study of Tm-doped solid solution (Sc0.5Y0.5)2SiO5 crystal.
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Shi, Jiaojiao, Liu, Bin, Zheng, Lihe, Wang, Qingguo, Tang, Huili, Liu, Junfang, Su, Liangbi, Wu, Feng, Zhao, Hengyu, He, Nuotian, Li, Na, Li, Qiu, Guo, Chao, Xu, Jun, Yang, Kejian, Xu, Xiaodong, Ryba-Romanowski, Witold, Lisiecki, Radosław, and Solarz, Piotr
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CRYSTAL growth , *NEAR infrared spectroscopy , *TEMPERATURE effect , *CRYSTAL structure , *THULIUM - Abstract
Tm-doped (Sc 0.5 Y 0.5 ) 2 SiO 5 (SYSO) crystals were grown by Czochralski method. The UV-VIR-NIR absorption spectra and the near-infrared emission spectra were measured and analysed by the Judd-Ofelt approach. Temperature influence on both absorption and emission spectra has been determined from the data recorded at room temperature and 10 K. It has been found that the structural disorder resulting from dissimilar ionic radii of Sc 3+ and Y 3+ in the solid solution (Sc 0.5 Y 0.5 ) 2 SiO 5 crystal brings about a strong inhomogeneous broadening of Tm 3+ ions spectra. However, it affects the excited state relaxation dynamics inherent to thulium-doped Y 2 SiO 5 and Sc 2 SiO 5 hosts weakly. [ABSTRACT FROM AUTHOR]
- Published
- 2018
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11. Spectroscopic characteristics of Dy3+-doped Y3Al5O12 (YAG) and Y3ScAl4O12 (YSAG) garnet single crystals grown by the micro-pulling-down method.
- Author
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Xu, Jie, Song, Qingsong, Liu, Jian, Zhou, Shidong, Pan, Yuxin, Li, Dongzhen, Liu, Peng, Xu, Xiaodong, Ding, Yuchong, Xu, Jun, and Lebbou, Kheirreddine
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YTTRIUM aluminum garnet , *SINGLE crystals , *FLUORESCENCE spectroscopy , *CRYSTAL structure , *GARNET , *ABSORPTION spectra , *ND-YAG lasers - Abstract
Dy3+-doped Y 3 Al 5 O 12 (YAG) and Y 3 ScAl 4 O 12 (YSAG) single crystals have been successfully grown by the micro-pulling-down (μ-PD) technique for the first time. The room temperature absorption spectra, fluorescence spectra and fluorescence decay curves were measured. Dy:YAG and Dy:Y 3 ScAl 4 O 12 crystals exhibit strongest emission centered at 583 nm, corresponding to the 4F 9/2 → 6H 13/2 transition. The decay lifetime of the 4F 9/2 level was measured to be 634 μs and 667 μs, respectively. All these results indicate that the Dy:YAG and Dy:Y 3 ScAl 4 O 12 crystals are promising candidates for yellow laser operation. • Dy:YAG and Dy:YSAG crystals were grown by the micro-pulling-down method. • Dy:YAG and Dy:YSAG crystals exhibit strong emission centered at 583 nm. • Dy:YSAG crystal has a wide emission bandwidth due to the disordered crystalline structure. [ABSTRACT FROM AUTHOR]
- Published
- 2019
- Full Text
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