首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Molecular dynamics calculation of carbon/hydrocarbon reflection coefficients on a hydrogenated graphite surface
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Molecular dynamics calculation of carbon/hydrocarbon reflection coefficients on a hydrogenated graphite surface

机译:氢化石墨表面碳/烃反射系数的分子动力学计算

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摘要

Reflection coefficients for carbon atoms and hydrocarbon molecules on A carbon surface are critically needed for plasma-surface interaction analysis of carbon surfaces. These coefficients have been calculated with a molecular dynamics code using the Brenner hydrocarbon potential. The surface was prepared by bombarding a pure graphite lattice with energetic hydrogen, until a saturation was reached at similar to0.42 H:C. Carbon atoms and several hydrocarbons (CH, CH2, CH3, and CH4) were incident on this surface at different energies and angles. Typical results for carbon incident at 45degrees show reflection coefficients of 0.64 +/- 0.01 at thermal energy, decreasing to 0.19 +/- 0.01 at 10 eV. Hydrocarbons show more complicated behavior, tending to reflect as molecules at thermal energies and break up at higher energies, producing a spectrum of different reflected species. The total reflection of carbon via these fragments tends to decrease with incident energy, and increase with hydrogen content in the original molecule. The reflection coefficients, together with the energy and angular distribution of reflected particles, can be incorporated in erosion/redeposition codes to allow improved modeling of chemically eroded carbon transport in fusion devices. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 13]
机译:碳表面的等离子体-表面相互作用分析非常需要A碳表面上的碳原子和碳氢化合物分子的反射系数。这些系数已使用布伦纳烃势用分子动力学代码计算得出。通过用高能氢轰击纯石墨晶格制备表面,直至达到接近0.42 H:C的饱和度。碳原子和几种碳氢化合物(CH,CH2,CH3和CH4)以不同的能量和角度入射到该表面上。碳以45度入射的典型结果显示,在热能作用下反射系数为0.64 +/- 0.01,在10 eV时降低至0.19 +/- 0.01。碳氢化合物表现出更复杂的行为,它们倾向于在热能下以分子形式反射,而在更高的能量下会分解,从而产生不同反射物种的光谱。通过这些碎片的碳的全反射趋向于随入射能量而减少,并随原始分子中的氢含量而增加。反射系数以及反射粒子的能量和角度分布可以合并到腐蚀/再沉积代码中,以改进聚变装置中化学侵蚀碳的传输模型。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:13]

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