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Energy Deposition Control during Cluster Bombardment: A Molecular Dynamics View

机译:团簇轰击过程中的能量沉积控制:分子动力学观点

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Molecular dynamics simulations are performed to model C_(60) and Au_(3) bombardment of a molecular solid, benzene, in order to understand the energy deposition placement as a function of incident kinetic energy and incident angle. Full simulations are performed for 5 keV projectiles, and the yields are calculated. For higher energies, 20 and 40 keV, the mesoscale energy deposition footprint model is employed to predict trends in yield. The damage accumulation is discussed in relationship to the region where energy is deposited to the sample. The simulations show that the most favorable conditions for increasing the ejection yield and decreasing the damage accumulation are when most of the projectile energy is deposited in the near-surface region. For molecular organic solids, grazing angles are the best choice for achieving these conditions.
机译:进行分子动力学模拟以模拟分子固体C_(60)和Au_(3)轰击,以了解能量沉积位置与入射动能和入射角的关系。对5 keV射弹进行了完全模拟,并计算了屈服量。对于20和40 keV的更高能量,采用中尺度能量沉积足迹模型来预测产量趋势。讨论损伤累积与能量沉积到样品的区域有关。模拟表明,增加射弹产量和减少损伤积累的最有利条件是当大部分射弹能量沉积在近地表区域时。对于分子有机固体,掠射角是实现这些条件的最佳选择。

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