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Resonant vibrational excitation of ethylene molecules in laser-assisted diamond deposition

机译:激光辅助金刚石沉积过程中乙烯分子的共振振动激发

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摘要

The influence of resonant vibrational excitation of ethylene molecules in combustion chemical vapor deposition of diamond was investigated. Resonant vibrational excitation of the CH_2-wagging mode (a type c fundamental band, v_7, at 949.3 cm~(-1)) in ethylene molecules was achieved by using a wavelength-tunable CO_2 laser with a matching wavelength at 10.532μm. By comparing to laser irradiation at off-resonance wavelengths, an on-resonance vibrational excitation is more efficient in energy coupling, increasing flame temperatures, accelerating the combustion reactions, and promoting diamond deposition. An enhanced rate of 5.7 was achieved in terms of the diamond growth rate with an improved diamond quality index at a high flame temperature under a resonant excitation of the CH_2-wagging mode. This study demonstrates that a resonant vibrational excitation is an effective route for coupling energy into the gas phase reactions and promoting the diamond synthesis process.
机译:研究了乙烯分子共振振动激发对金刚石燃烧化学气相沉积的影响。通过使用匹配波长为10.532μm的波长可调CO_2激光器,实现了乙烯分子中CH_2摆动模式的共振振动激发(c型基带v_7,在949.3 cm〜(-1)处)。通过与非共振波长处的激光照射进行比较,共振时振动激发在能量耦合,提高火焰温度,加速燃烧反应和促进金刚石沉积方面更有效。在CH_2摆动模式的共振激发下,在高火焰温度下,金刚石的生长速率提高了5.7,金刚石的质量指数提高了。这项研究表明,共振振动激发是将能量耦合到气相反应中并促进金刚石合成过程的有效途径。

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