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    高飞

    • 教授     博士生导师   硕士生导师
    • 主要任职:物理学院副院长
    • 性别:男
    • 毕业院校:大连理工大学
    • 学位:博士
    • 所在单位:物理学院
    • 学科:等离子体物理
    • 电子邮箱:fgao@dlut.edu.cn

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    Observation of the standing wave effect in large-area, very-high-frequency capacitively coupled plasmas by using a fiber Bragg grating sensor

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    论文类型:期刊论文

    发表时间:2018-06-14

    发表刊物:JOURNAL OF APPLIED PHYSICS

    收录刊物:SCIE

    卷号:123

    期号:22

    ISSN号:0021-8979

    摘要:The large-area capacitive discharges driven at very high frequencies have been attracting much attention due to their wide applications in material etching and thin film deposition. However, in the regime, the standing wave effect (SWE) becomes a major limitation for plasma material processing uniformity. In this work, a fiber Bragg grating sensor was utilized for the observation of the SWE in a large-area capacitive discharge reactor by measuring the radial distribution of the neutral gas temperature T-g. The influences of the RF power and the working pressure on the radial profiles of T-g were studied. At a higher frequency (100 MHz) and a lower pressure (5 Pa), T-g presents a center-peaked radial distribution, indicating a significant SWE. As the RF power increases, the central peak of T-g becomes more evident due to the enhanced SWE. By contrast, at 100MHz and a higher pressure (40 Pa), the radial distribution of T-g shows an evident peak at the electrode edge and T-g decays dramatically towards the discharge center because the electromagnetic waves are strongly damped as they are propagating from the edge to the center. At a lower frequency (27MHz), only edge-high profiles of T-g are observed for various pressures. For the sake of a comparison, a hairpin resonance probe was used to measure the radial distributions of the plasma density n(p) under the same condition. The radial profiles of T-g are found to generally resemble those of n(p) under various conditions. Based on the experimental results, the neutral gas heating mechanism was analyzed. Published by AIP Publishing.