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Electronic heat transport versus atomic heating in irradiated short metallic nanowires

机译:电子热传输与照射短金属纳米线中的原子加热

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摘要

The two-temperature model (TTM) is commonly used to represent the energy exchange between atoms and electrons in materials under irradiation. In this work we use the TTM coupled to molecular dynamics (TTM-MD) to study swift heavy ion irradiation of Au and W finite nanowires. While no permanent structural modifications are observed in bulk, nanowires behave in a different way depending on thermal conductivity and the electron-phonon coupling parameter. Au is a good heat conductor and it does not transfer energy from electrons to phonons too efficiently. Therefore, energy is quickly carried away from the track so that both electronic and lattice temperatures remain quite uniform across the sample at all times. W has a lower thermal conductivity and a larger electron-phonon coupling, thus supporting an inhomogeneous lattice temperature profile with temperatures well above melting lasting several picoseconds in the irradiated region. Both W and Au nanowires display radiation-induced surface roughening. However, in the case of W there is also sputtering and the formation of a hole in the central part of the wire, purely due to the energy transferred to the atoms by the electrons. The physical mechanisms underlying these findings are rationalized in terms of a combination of sputtering, vacancy formation, and melt flow phenomena. The role of the electron-phonon coupling parameter g is analyzed.
机译:两个温度模型(TTM)通常用于表示辐照下材料中原子和电子之间的能量交换。在这项工作中,我们使用TTM耦合到分子动力学(TTM-MD),以研究AU和W有限纳米线的SWIFT重离子照射。虽然在块状中没有观察到永久的结构修改,但是纳米线根据导热率和电子 - 声子耦合参数以不同的方式行事。 Au是一个良好的热导体,它不会过于有效地将能量从电子传输到声子。因此,能量迅速远离轨道,使得电子和格子温度始终在样品上保持相当均匀。 W具有较低的导热率和较大的电子 - 声子耦合,从而支撑着不均匀的晶格温度曲线,其温度良好地高于熔化的辐射区域中的几种皮秒。 W和Au纳米线都显示出辐射诱导的表面粗糙化。然而,在W的情况下,在线的中心部分也存在溅射和形成孔,纯粹是由于电子通过电子传递到原子的能量。这些发现的物理机制在溅射,空位形成和熔体流动现象的组合方面是合理化的。分析了电子 - 声子耦合参数G的作用。

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  • 来源
    《Physical review, B》 |2019年第15期|共15页
  • 作者单位

    Univ Nacl Cuyo CONICET RA-5500 Mendoza Argentina;

    Queens Univ Belfast Sch Math &

    Phys ASC Belfast BT7 1NN Antrim North Ireland;

    Queens Univ Belfast Sch Math &

    Phys ASC Belfast BT7 1NN Antrim North Ireland;

    Univ Cambridge Cavendish Lab TCM JJ Thomson Ave Cambridge CB3 0HE England;

    Univ Mendoza CONICET RA-5500 Mendoza Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
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