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Dive into the research topics where Liu Chun-Ming is active.

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Featured researches published by Liu Chun-Ming.


Chinese Physics | 2007

The influence of nickel dopant on the microstructure and optical properties of SnO2 nano-powders

Liu Chun-Ming; Fang Li-Mei; Zu Xiao-Tao; Zhou Wei-Lie

The microstructure and optical properties of Ni-doped SnO2 nano-powders are studied in detail. By Ni-doping, not only the grain size reduces, but also the grain shape changes from nano-rods to spherical particles. The crystallization becomes better with annealing temperature increasing. The band gap energy decreases as nickel doping level increases. The sp-d hybridization and alloying effect due to amorphous SnO2-x phase should be responsible for the band gap narrowing effect. Nickel dopant does not change the photoluminescence (PL) peak positions.


Chinese Physics B | 2012

Two localized CO2 laser treatment methods for mitigation of UV damage growth in fused silica

Jiang Yong; Xiang Xia; Liu Chun-Ming; Luo Cheng-Si; Wang Hai-Jun; Yuan Xiao-Dong; He Shao-Bo; Ren Wei; Lü Hai-Bing; Zheng Wanguo; Zu Xiao-Tao

Two methods: high-power, short-time, single-shot irradiation (Method A) and low-power, long-time, multi-shot irradiation (Method B) are investigated to mitigate the UV damage growth in fused silica by using a 10.6-μm CO2 laser. To verify the mitigation effect of the two methods, the laser induced damage thresholds (LIDTs) of the mitigated sites are tested with a 355-nm, 6.4-ns Nd:YAG laser, and the light modulation of the mitigation sites are tested with a 351-nm continuous Nd:YLF laser. The mitigated damaged sites treated with the two methods have almost the same LIDTs, which can recover to the level of pristine material. Compared with Method A, Method B produces mitigated sites with low crater depth and weak light modulation. In addition, there is no raised rim or re-deposited debris formed around the crater edge for Method B. Theoretical calculation is utilized to evaluate the central temperature of the CO2 laser beam irradiated zone and the radius of the crater. It is indicated that the calculated results are consistent with the experimental results.


Chinese Physics Letters | 2012

The Structure Evolution of Fused Silica Induced by CO2 Laser Irradiation

Liu Chun-Ming; Jiang Yong; Luo Cheng-Si; Shi Xiao-Yan; Ren Wei; Xiang Xia; Wang Hai-Jun; He Shao-Bo; Yuan Xiao-Dong; Lyu Haibing; Zheng Wanguo; Zu Xiao-Tao

The structure evolution of fused silica induced by CO2 laser irradiation (with a wavelength of 10.6 μm) is studied in detail. In the non-evaporation mitigation process, the irradiation time should be long enough to completely eliminate damage. However, there is a raised rim around the mitigated site. The rim height is enhanced when the irradiation time increases, and the mitigated site can lead to off-axis and on-axis downstream light intensification. Volume shrinkage occurs during the irradiation and rapid cooling processes, and this may be due to a decrease in the Si—O—Si bond angle. The distribution of debris overlaps with the maximum phase retardance induced by stress. The debris arouses an enhanced light absorption in the region from 220 nm to 800 nm.


Chinese Physics Letters | 2012

Effect of N-Doping on Absorption and Luminescence of Anatase TiO2 Films

Xiang Xia; Shi Xiao-Yan; Gao Xiao-Lin; Ji Fang; Wang Ya-jun; Liu Chun-Ming; Zu Xiao-Tao

Anatase TiO2 films are deposited on glass substrates at different oxygen partial pressures of 0.8–1.6 Pa. Room temperature N ion implantation is conducted in the films at ion fluences up to 5 × 1017 ions/cm2. UV-visible absorption and photoluminescence (PL) are investigated. With the increase of N ion fluences, the band gap of TiO2 decreases and the absorbance increases. X-ray photoelectron spectroscopy (XPS) confirms the formation of O-Ti-N nitride after implantation, resulting in the red shift of the band gap. The PL intensity of the deposited films increases with the increasing oxygen partial pressure and decreases remarkably due to the irradiation defects induced by ion implantation.


Chinese Physics B | 2012

Mitigation of laser damage growth in fused silica by using a non-evaporative technique

Jiang Yong; Liu Chun-Ming; Luo Cheng-Si; Yuan Xiao-Dong; Xiang Xia; Wang Hai-Jun; He Shao-Bo; Lü Hai-Bing; Ren Wei; Zheng Wanguo; Zu Xiao-Tao

A non-evaporative technique is used to mitigate damage sites with lateral sizes in a range from 50 μm to 400 μm and depths smaller than 100 μm. The influence of the pulse frequency of a CO2 laser on the mitigation effect is studied. It is found that a more symmetrical and smooth mitigation crater can be obtained by increasing the laser pulse frequency form 0.1 to 20 kHz. Furthermore, the sizes of laser-affected and distorted zones decrease with the increase of the laser pulse frequency, leading to less degradation of the wave-front quality of the conditioned sample. The energy density of the CO2 laser beam is introduced for selecting the mitigation parameters. The damage sites can be successfully mitigated by increasing the energy density in a ramped way. Finally, the laser-induced damage threshold (LIDT) of the mitigated site is tested using 355 nm laser beam with a small spot (0.23 mm2) and a large spot (3.14 mm2), separately. It is shown that the non-evaporative mitigation technique is a successful method to stop damage re-initiation since the average LIDTs of mitigated sites tested with small or large laser spots are higher than that of pristine material.


Chinese Physics B | 2012

Rear-surface light intensification caused by a Hertzian-conical crack in 355-nm silica optics

Zhang Chun-Lai; Yuan Xiao-Dong; Xiang Xia; Wang Zhiguo; Liu Chun-Ming; Li Li; He Shao-Bo; Zu Xiao-Tao

Theoretical studies show that a Hertzian-conical crack can be considered to be composed of double cone faces for simplicity. In the present study, the three-dimensional finite-difference time-domain method is employed to quantify the electric-field distribution within the subsurface in the presence of such a defect under normal incidence irradiation. Both impurities (inside the crack) and the chemical etching have been investigated. The results show that the maximum electric field amplitude |E|max is 9.57374 V/m when the relative dielectric constant of transparent impurity equals 8.5. And the near-field modulation will be improved if the crack is filled with the remainder polishing powders or water vapor/drops. Meanwhile, the laser-induced initial damage moves to the glass—air surface. In the etched section, the magnitude of intensification is strongly dependent on the inclination angle θ. There will be a highest modulation when θ is around π/6, and the maximum value of |E|max is 18.57314 V/m. When θ ranges from π/8 to π/4, the light intensity enhancement factor can easily be larger than 100, and the modulation follows a decreasing trend. On the other hand, the modulation curves become smooth when θ > π/4 or θ < π/8.


Chinese Physics Letters | 2011

Magnetism of a Nitrogen-Implanted TiO2 Single Crystal

Liu Chun-Ming; Xiang Xia; Zhang Yan; Jiang Yong; Zu Xiao-Tao

Single rutile crystal TiO2 was implanted using nitrogen ions with energy of 60 keV. The microstructure, ultraviolet-visible light absorption spectra, conductivity and magnetism are investigated. Except for the nitrogen dopant, no impurity can be detected by x-ray diffraction and x-ray photoelectron spectra. The absorption in the visible light region is enhanced with nitrogen implantation dose increasing. By measuring the temperature dependence of resistance, it is found that the sample implanted with 1 × 1018 ions/cm2 is changes from insulating to semiconducting, and the variable range hopping is the main conducting mechanism. Room-temperature ferromagnetism is also obtained in this sample. The magnetism as a function of temperature can be well fitted using the three-dimensional spin wave model plus the Curie-Weiss model, indicating that there is a mixed phase of ferromagnetism and paramagnetism.


Chinese Physics Letters | 2011

Laser Cleaning Techniques for Removing Surface Particulate Contaminants on Sol-Gel SiO2 Films

Zhang Chun-Lai; Li Xibin; Wang Zhiguo; Liu Chun-Ming; Xiang Xia; Lyu Haibing; Yuan Xiao-Dong; Zu Xiao-Tao

Dry laser cleaning (DLC) and laser shockwave cleaning (LSC) are used to remove the particulate contamination from SiO2 sol-gel optical films. The results show that the LSC with a shockwave initiated by plasma formation under a focused laser beam pulse offers much better efficiency than DLC. Silica particles up to 10μm on SiO2 films can be removed without substrate damage at a gap distance of 0.5 mm, and a more uniform surface microstructure can be obtained after LSC. Furthermore, it is demonstrated that the transmittance of contaminated SiO2 films can be restored to the as-deposited value after the LSC on dispersed-particle zones. LSC has potential applications in engineering-oriented large components.


Archive | 2006

Experimental research of laser-induced damage mechanism of the sol-gel SiO 2 and IBSD SiO 2 thin films

Chen Xi-Quan; Zu Xiaotao; Zheng Wanguo; Jiang Xiaodong; Lü Hai-Bing; Ren Huan; Zhang Yan-Zhen; Liu Chun-Ming


Chinese Physics B | 2016

溶融シリカ表面に対する緩和部位のCO_2レーザ照射を用いた二次処理の影響【Powered by NICT】

Jiang Yong; Zhou Qiang; Qiu Rong; Gao Xiang; Wang Huili; Yao Caizhen; Wang Junbo; Zhao Xin; Liu Chun-Ming; Xiang Xia; Zu Xiaotao; Yuan Xiaodong; Miao Xinxiang

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Xiang Xia

University of Electronic Science and Technology of China

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Zu Xiao-Tao

University of Electronic Science and Technology of China

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Jiang Yong

University of Electronic Science and Technology of China

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Yuan Xiao-Dong

China Academy of Engineering Physics

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He Shao-Bo

China Academy of Engineering Physics

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Zheng Wanguo

China Academy of Engineering Physics

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Luo Cheng-Si

University of Electronic Science and Technology of China

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Lü Hai-Bing

China Academy of Engineering Physics

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Ren Wei

China Academy of Engineering Physics

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Wang Hai-Jun

China Academy of Engineering Physics

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