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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Molecular dynamics simulations of displacement cascade and threshold energy in ordered alloy Al_3U
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Molecular dynamics simulations of displacement cascade and threshold energy in ordered alloy Al_3U

机译:有序合金Al_3U的位移级联和阈能的分子动力学模拟。

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The displacement threshold energy and collision cascades in ordered alloy Al3U with L1(2) structure are studied by molecular dynamics simulations. It turns out that as compared with Al recoils, U primary recoils generally have a lower average displacement threshold energy E-d (i.e. 41 eV vs 20 eV) and show less crystallographic anisotropy. The [1 1 0] direction which can produced a...-U-Al-U-Al... replacement collision sequence is found to have a high E-d, but does not create a long antisite defect chain. We have simulated 100 cascades with different energies of primary knock-on atom (PKA) ranging from 1 to 5 keV to make clear which role the energy, direction and PKA's species has played on defect production. The number of surviving stable defects has a power-law dependence on energy. Displacement cascades tend to form large size clusters involving many point defects with increasing PKA's energy, and the U PKA generally forms clusters with size larger than the Al recoil.
机译:通过分子动力学模拟研究了具有L1(2)结构的有序合金Al3U中的位移阈值能量和碰撞级联。事实证明,与Al的后座力相比,U的一次后座力通常具有较低的平均位移阈值能量E-d(即41 eV对20 eV),并且晶体各向异性较小。发现可以产生...- U-Al-U-Al ...替换碰撞序列的[1 1 0]方向具有较高的E-d,但不会产生长的反位缺陷链。我们已经模拟了100个级联,这些级联具有1到5 keV的不同能量的主连锁原子(PKA),以弄清能量,方向和PKA种类在缺陷产生中所起的作用。尚存的稳定缺陷的数量与能量有幂律关系。随着PKA能量的增加,位移级联倾向于形成包含许多点缺陷的大尺寸簇,而U PKA通常形成尺寸大于Al反冲的簇。

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