吴兴伟
Engineer
Gender:Female
Alma Mater:大连理工大学
Degree:Doctoral Degree
School/Department:物理学院
Discipline:Plasma physics
Business Address:综合教学一号楼305室
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Indexed by:期刊论文
Date of Publication:2017-05-01
Journal:PLASMA SCIENCE & TECHNOLOGY
Included Journals:SCIE、EI
Volume:19
Issue:5
ISSN No.:1009-0630
Key Words:CRDS; ns-pulsed discharge; time evolution of NO2 concentration
Abstract:To describe the complex kinetics of formation and destruction mechanism of nitrogen dioxide (NO2), there is an increasing demand for real-time and in situ analysis of NO2 in the discharge region. Pulsed cavity ring-down spectroscopy (CRDS) provides an excellent diagnostic approach. In the present paper, CRDS has been applied in situ for time evolution measurement of NO2 concentration which is rarely investigated in gas discharges. In pulsed direct current discharge of NO2/Ar mixture at a pressure of 500 Pa, a peak voltage of -1300V and a frequency of 30 Hz, for higher initial NO2 concentration (3.05 x 10(14) cm(-3), 8.88 x 10(13) cm(-3)), the NO2 concentration sharply decreases at the beginning of the discharge afterglow and then becomes almost constant, and the pace of decline increases with pulse duration; however, for lower initial NO2 concentration of 1.69 x 10(13) cm(-3), the NO2 concentration also decreases at the beginning of the discharge afterglow for 200 ns and 1 mu s pulse durations, while it slightly increases and then declines for 2 mu s pulse duration. Thus, the removal of low-level NO2 could not be promoted by a higher mean energy input.
主要从事激光光谱学诊断低温等离子体痕量物种方面的科学研究工作。侧重于将光腔衰荡光谱技术(CRDS)应用于等离子体痕量物种检测,测量其在不同条件下的绝对数密度。
现就职于基础物理实验教学中心,主要参与大学物理实验教学、物理实验竞赛指导等工作。