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首页> 外文期刊>Materials Research Letters >Direct observation of ion-induced self-organization and ripple propagation processes in atomistic simulations
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Direct observation of ion-induced self-organization and ripple propagation processes in atomistic simulations

机译:在原子模拟中直接观察离子诱导的自组织和波纹传播过程

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Patterns on sand generated by blowing winds are one of the most commonly seen phenomena driven by such a self-organization process, as has been observed at the nanoscale after ion irradiation. The origins of this effect have been under debate for decades. Now, a new methodology allows to simulate directly the ripple formation by high-fluence ion-irradiation. Since this approach does not pre-assume a mechanism to trigger self-organization, it can provide answers to the origin of the ripple formation mechanism. The surface atom displacement and a pile-up effect are the driving force of ripple formation, analogously to the macroscopic one.
机译:如在离子辐照后在纳米尺度上观察到的那样,吹风在沙子上产生的图案是由这种自组织过程驱动的最常见现象之一。这种影响的起源已经争论了数十年。现在,一种新的方法可以直接模拟高通量离子辐照引起的波纹形成。由于此方法没有预先假定触发自组织的机制,因此它可以为纹波形成机制的起源提供答案。类似于宏观的,表面原子的位移和堆积效应是波纹形成的驱动力。

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