首页> 外文期刊>IEEE Transactions on Plasma Science >Comparison of excessive Balmer /spl alpha/ line broadening of inductively and capacitively coupled RF, microwave, and glow-discharge hydrogen plasmas with certain catalysts
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Comparison of excessive Balmer /spl alpha/ line broadening of inductively and capacitively coupled RF, microwave, and glow-discharge hydrogen plasmas with certain catalysts

机译:比较使用某些催化剂的电感耦合和电容耦合的RF,微波和辉光放电氢等离子体的过度Balmer / spl alpha /线展宽

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From the width of the 656.3-nm Balmer /spl alpha/ line emitted from inductively and capacitively coupled radio frequency (RF), microwave, and glow-discharge plasmas, it was found that inductively coupled RF helium-hydrogen and argon-hydrogen plasmas showed extraordinary broadening corresponding to an average hydrogen atom energy of 250-310 and 180-230 eV, respectively, compared to 30-40 and 50-60 eV, respectively, for the corresponding capacitively coupled plasmas. Microwave helium-hydrogen and argon-hydrogen plasmas showed significant broadening corresponding to an average hydrogen atom energy of 180-210 and 110-130 eV, respectively. The corresponding results from the glow-discharge plasmas were 33-38 and 30-35 eV, respectively, compared to /spl ap/ 4 eV for plasmas of pure hydrogen, neon-hydrogen, and xenon-hydrogen maintained in any of the sources. Similarly, the average electron temperatures T/sub e/ for helium-hydrogen and argon-hydrogen inductively coupled RF and microwave plasmas were high (43 200 /spl plusmn/ 5% K, 18 600 /spl plusmn/ 5% K, 30 500 /spl plusmn/ 5% K, and 13 700 /spl plusmn/ 5% K, respectively); compared to 9300 /spl plusmn/ 5% K, 7300 /spl plusmn/ 5% K, 8000 /spl plusmn/ 5% K, and 6700 /spl plusmn/ 5% K for the corresponding plasmas of xenon-hydrogen and hydrogen alone, respectively. Stark broadening or acceleration of charged species due to high electric fields cannot explain the inductively coupled RF and microwave results since the electron density was low and no high field was present. Rather, a resonant energy transfer mechanism is proposed.
机译:从电感耦合和电容耦合的射频(RF),微波和辉光放电等离子体发射的656.3 nm Balmer / spl alpha /线的宽度,可以发现电感耦合RF氦氢和氩氢等离子体显示出与相应的电容耦合等离子体的30-40和50-60 eV相比,分别对应于250-310 eV和180-230 eV的平均氢原子能量的超常扩展。微波氦-氢和氩-氢等离子体显示出明显的展宽,分别对应于180-210 eV和110-130 eV的平均氢原子能。辉光放电等离子体的相应结果分别为33-38 eV和30-35 eV,而在任何来源中保持的纯氢气,氖气和氙气等离子体的结果分别为sap ap / 4 eV。同样,氦气和氩气感应耦合的RF和微波等离子体的平均电子温度T / sub e /很高(43 200 / spl plusmn / 5%K,18600 / spl plusmn / 5%K,30500 / spl plusmn / 5%K,和13700 / spl plusmn / 5%K);相对于单独的氙气,氢气和氢气等离子体,分别为9300 / spl plusmn / 5%K,7300 / spl plusmn / 5%K,8000 / spl plusmn / 5%K和6700 / spl plusmn / 5%K,分别。高电场导致的带电物质的急剧展宽或加速无法解释感应耦合的RF和微波结果,因为电子密度低且不存在高电场。相反,提出了共振能量转移机制。

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