Wang Xiaohua
Changchun University of Science and Technology
19 Papers
56 Citations
Wang Xiaohua is an academic researcher from Changchun University of Science and Technology. The author has contributed to research in topics: Microbeam & Molecular beam epitaxy. The author has an hindex of 4, co-authored 19 publications.
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Papers
Influence factors and mechanism of emission of ZnS:Cu nanocrystals
Chu Xue-Ying,Wang Xin-Nong,LI Jin-Hua,Yao Dan,Fang Xuan,Fang Fang,Fang Fang,Wei Zhipeng,Wang Xiaohua +8 more
TL;DR: In this article, the effects of the dopant concentration, the reactant ratio, and aging temperature on the optical properties of the ZnS:Cu nanocrystals are investigated.
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Numerical Study on Atmospheric Pressure DBD in Helium: Single-breakdown and Multi-breakdown Discharges
TL;DR: In this article, a 1D fluid model for homogeneous dielectric barrier discharge (DBD) in helium is presented, aimed at unraveling the spatial-temporal characteristics of two basic discharge regimes: single-breakdown and multiscale discharges.
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Quantitative Single-Ion Irradiation by ASIPP Microbeam
Wang Xu-Fei,Chen Lianyun,Hu Zhiwen,Wang Xiaohua,Zhang Jun,Li Jun,Chen Bin,Hu Suhua,Shi Zhong-tao,Wu Yu,Xu Mingliang,Wu Li-Jun,Wang Shaohu,Yu Zengliang +13 more
TL;DR: In this article, a single-ion microbeam facility has been constructed by the microbeam research group in ASIPP (Institute of Plasma Physics, Chinese Academy of Science), which was designed to deliver defined numbers of hydrogen ions produced by a van de Graaff accelerator, covering an energy range from 200?keV to 3?MeV, into living cells (5??m?20m diameter) growing in culture on thin plastic films.
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Generation of Two-Atom Maximal Entanglement and Quantum Information Transfer via Microtoroidal Cavity-Atom System
TL;DR: In this article, the authors proposed a scheme for the generation of two-atom maximally entangled states and the quantum information transfer between two atoms via two identical atoms in resonation with ultrahigh-Q toroidal microcavities.
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Crystal structure and optical properties of GaAs nanowires
Wang Peng-Hua,Tang Jilong,Kang Yu-Bin,Fang Xuan,Fang Dan,Wang Dengkui,Lin Feng-Yuan,Wang Xiaohua,Wei Zhipeng +8 more
TL;DR: In this paper, a variable temperature photoluminescence (PL) spectroscopy is used on GaAs nanowires to find the luminescence peaks P1 and P2 at 10 K are located at 1.493 eV and 1.516 eV, respectively.
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