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Dive into the research topics where Feng Zhigang is active.

Publication


Featured researches published by Feng Zhigang.


Chinese Physics B | 2015

2.0-μm emission and energy transfer of Ho3+/Yb3+ co-doped LiYF4 single crystal excited by 980 nm*

Yang Shuo; Xia Haiping; Jiang Yongzhang; Zhang Jiazhong; Jiang Dongsheng; Wang Cheng; Feng Zhigang; Zhang Jian; Gu Xue-Mei; Zhang Jianli; Jiang Haochuan; Chen Baojiu

Ho3+/Yb3+ co-doped LiYF4 single crystals with various Yb3+ concentrations and ~ 0.98 mol% Ho3+ concentration are grown by the Bridgman method under the conditions of taking LiF and YF3 as raw materials and a temperature gradient (40 °C/cm–50 °C/cm) for the solid–liquid interface. The luminescent performances of the crystals are investigated through emission spectra, infrared transmittance spectrum, emission cross section, and decay curves under excitation by 980 nm. Compared with the Ho3+ single-doped LiYF4 crystal, the Ho3+/Yb3+ co-doped LiYF4 single crystal has an obviously enhanced emission band from 1850 nm to 2150 nm observed when excited by a 980-nm diode laser. The energy transfer from Yb3+ to Ho3+ and the optimum fluorescence emission around 2.0 μm of Ho3+ ions are investigated. The maximum emission cross section of the above sample at 2.0 μm is calculated to be 1.08×10−20 cm2 for the LiYF4 single crystal of 1-mol% Ho3+ and 6-mol% Yb3+ according to the measured absorption spectrum. The high energy transfer efficiency of 88.9% from Yb3+ to Ho3+ ion in the sample co-doped by Ho3+ (1 mol%) and Yb3+ (8 mol%) demonstrates that the Yb3+ ions can efficiently sensitize the Ho3+ ions.


Optik | 2016

Cooperative downconversion of Er3+/Yb3+ co-doped α-NaYF4 single crystals

Wang Cheng; Zhang Jiazhong; Xia Haiping; Feng Zhigang; Jiang Dongsheng; Zhang Jian; Gu Xue-Mei; Zhang Jianli; Jiang Haochuan; Chen Baojiu


Journal of Modern Optics | 2017

近紫外励起下のEu3+ドープα‐NaYF4単結晶の発光特性

Jiang Dongsheng; Xia Haiping; Zhang Jian; Wang Cheng; Feng Zhigang; He Shinan; Tang Qingyang; Sheng Qiguo; Chen Baojiu; Jiang Haochuan


Archive | 2016

Preparation method of glass film containing cerium ion doped lanthanum bromide microcrystalline

Feng Zhigang; Xia Haiping; Jiang Dongsheng; Wang Cheng; Zhang Jian; He Shinan; Sheng Qiguo; Tang Qingyang


Archive | 2016

Glass film containing rare-earth ion doped Cs2LiScI6 microcrystals and preparation method thereof

Sheng Qiguo; Xia Haiping; Feng Zhigang; Wang Cheng; Jiang Dongsheng; He Shinan; Tang Qingyang; Zhang Jian


Archive | 2016

Glass film containing rare-earth-ion-doped Cs2LiLaBr6 microcrystalline and preparation method thereof

Sheng Qiguo; Xia Haiping; Feng Zhigang; Jiang Dongsheng; Wang Cheng; Zhang Jian; He Shinan; Tang Qingyang


Archive | 2016

Preparation method of glass film containing rare-earth ion doped barium iodide microcrystals

Tang Qingyang; Xia Haiping; Jiang Dongsheng; Feng Zhigang; Wang Cheng; Zhang Jian; He Shinan; Sheng Qiguo


Archive | 2016

Preparation method for glass and glass film both containing rare-earth-ion-doped lutetium chloride microcrystalline

Wang Cheng; Xia Haiping; Feng Zhigang; Jiang Dongsheng; Zhang Jian; He Shinan; Sheng Qiguo; Tang Qingyang


Archive | 2016

Glass film containing rare-earth-ion-doped calcium iodide microcrystalline and preparation method thereof

Wang Cheng; Xia Haiping; Jiang Dongsheng; Feng Zhigang; Zhang Jian; He Shinan; Tang Qingyang; Sheng Qiguo


Archive | 2016

Preparation method of glass and glass film containing rare earth ion doped lanthanum chloride microcrystalline

Jiang Dongsheng; Xia Haiping; Feng Zhigang; Wang Cheng; Zhang Jian; He Shinan; Sheng Qiguo; Tang Qingyang

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Wang Cheng

Chinese Academy of Sciences

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Chen Baojiu

Chinese Academy of Sciences

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Jiang Haochuan

Chinese Academy of Sciences

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