不同激光辐照强度下脉冲激光烧蚀制备硅纳米晶的成核区宽度

Z. Deng, X. Pang, Xuecheng Ding, L. Chu, Ying-long Wang
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引用次数: 3

摘要

采用不同激光辐照强度的脉冲激光烧蚀方法,在10 Pa氩气中制备了硅纳米晶。在空间中形成的颗粒沉积在基体上,并在远离靶材的一定范围内分布。根据晶粒的沉积位置和半径,粗略计算出晶粒在空间中的形核位置。结果表明:Langmuir探针检测的成核区宽度随着离子密度的增加而变宽,离子密度随激光能量从2 J/cm2增加到6 J/cm2;即随着激光通量的增加,成核区宽度变宽。同时,随着晶粒最终形成位置向后移动,晶粒初始形成位置向烧蚀点移动,晶粒宽度逐渐变宽。用成核热动力学理论对实验结果进行了合理的解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Width of Nucleation Region of Si Nanocrystal Grains Prepared by Pulsed Laser Ablation with Different Laser Fluence
Si nanocrystal grains were prepared by pulsed laser ablation with different laser fluence in Ar gas of 10 Pa at room temperature. The as-formed grains in the space deposited on the substrates and distributed in a certain range apart from target. According to the depositing position and radius of grains, the nucleation locations of grains in the space were roughly calculated. The results indicated that the width of nucleation region broadened with increasing of ion densities diagnosed by Langmuir probe, which increased with laser fluence from 2 J/cm2 to 6 J/cm2; that is, width of nucleation region broadened with addition of laser fluence. At the same time, the width broadened with the terminal formation position moving backward and the initial formation position of grains moving toward ablated spot. The experimental results were explained reasonably by nucleation thermokinetic theory.
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