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First-principles calculations of helium and neon desorption from cavities in silicon

机译:从硅腔中解吸氦气和氖气的第一性原理计算

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Combining density functional theory, the nudged elastic band technique, and the ultradense fluid model, we investigated the desorption process of He and Ne in silicon. Our results show that the internal surfaces of gas-filled bubbles are not a limiting factor during desorption experiments, since the surface reconstruction opens diffusion paths easier than in the bulk. We show that the vibrational contribution to the energy of helium in the bulk has to be considered in order to determine realistic pressures in the bubbles, when comparing experiments and simulations. At the maximum of desorption, an average pressure of 12GPa is computed.
机译:结合密度泛函理论,微带弹性带技术和超致密流体模型,我们研究了He和Ne在硅中的解吸过程。我们的结果表明,在解吸实验中,充气气泡的内表面不是限制因素,因为表面重建比在主体中更容易打开扩散路径。我们显示,在比较实验和模拟时,为了确定气泡中的实际压力,必须考虑对主体中氦能量的振动贡献。解吸最大时,计算出的平均压力为12GPa。

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