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Role of electronic thermal transport in amorphous metal recrystallization: A molecular dynamics study

机译:电子热传输在无定形金属重结晶中的作用:分子动力学研究

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Recrystallization of glasses is important in a wide range of applications including electronics and reactive materials. Molecular dynamics (MD) has been used to provide an atomic picture of this process, but prior work has neglected the thermal transport role of electrons, the dominant thermal carrier in metallic systems. We characterize the role of electronic thermal conductivity on the velocity of recrystallization in Ni using MD coupled to a continuum description of electronic thermal transport via a two-temperature model. Our simulations showthat for strong enough coupling between electrons and ions, the increased thermal conductivity removes the heat from the exothermic recrystallization process more efficiently, leading to a lower effective temperature at the recrystallization front and, consequently, lower propagation velocity. We characterize how electron-phonon coupling strength and system size affect front propagation velocity. Interestingly, we find that initial recrystallization velocity increases with decreasing system size due to higher overall temperatures. Overall, we show that a more accurate description of thermal transport due to the incorporation of electrons results in better agreement with experiments. Published by AIP Publishing.
机译:眼镜的重结晶在包括电子和反应材料的各种应用中非常重要。分子动力学(MD)已被用于提供该过程的原子图像,但是在金属系统中忽略了电子的热传输作用,所以在金属系统中的热传输作用。我们的表征了电子热导率对NI中的再结晶速度的作用,MD通过双温模型耦合到连续的电子热传输的连续性描述。我们的模拟显示电子和离子之间足够的足够耦合,导热率的提高从放热再结晶过程中更有效地去除热量,导致重结晶前方的较低有效温度,并且因此降低传播速度。我们表征了电子 - 声子耦合强度和系统尺寸如何影响前传播速度。有趣的是,由于总体温度较高,我们发现初始重结晶速度随着系统尺寸而降低而增加。总的来说,我们表明,由于电子的掺入导致热传输的更准确描述导致了与实验更好的协议。通过AIP发布发布。

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