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Understanding resistance to amorphization by radiation damage

机译:了解辐射损伤对非晶化的抵抗力

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Decades of experimental and theoretical studies have brought some useful insights about what defines resistance to amorphization by radiation damage; however, the problem is still viewed as generally unsolved. I review ideas and concepts that have been put forward to help with understanding this problem. I then discuss how the type of interatomic force is relevant for resistance to amorphization, with covalency of bonding stabilizing the damage and making material amorphizable. On a more detailed level, I suggest that resistance to amorphization of a complex non-metallic material is defined by the competition between the short-range covalent and long-range ionic forces. I follow this with a review of experimental data on 116 materials, to illustrate that the type of interatomic force can generally explain the resistance to amorphization. I conclude by discussing how the proposed picture is related to models proposed previously, and by suggesting some possible future research.
机译:几十年的实验和理论研究带来了一些有用的见解,这些见解定义了辐射损伤对非晶化的抵抗力。但是,该问题仍被认为通常无法解决。我回顾了为帮助理解此问题而提出的想法和概念。然后,我将讨论原子间作用力的类型与抗非晶化有关,键的共价关系稳定损伤并使材料非晶化。在更详细的水平上,我建议,对复杂的非金属材料的抗非晶化性由短距离共价力和长距离离子力之间的竞争来定义。在此之后,我回顾了116种材料的实验数据,以说明原子间作用力的类型通常可以解释对非晶化的抵抗力。最后,我讨论了提出的图片与先前提出的模型之间的关系,并提出了一些可能的未来研究。

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