温度对二氧化硅膜纳米级热弹性响应的影响

APL Materials Pub Date : 2024-05-01 DOI:10.1063/5.0201769
D. Fainozzi, Federico Caporaletti, Flavio Capotondi, Dario De Angelis, Ryan A. Duncan, L. Foglia, Alessandro Martinelli, R. Mincigrucci, K. A. Nelson, Emanuele Pedersoli, Marco Zanatta, Alexei A. Maznev, Giulio Monaco, F. Bencivenga, Giacomo Baldi
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引用次数: 0

摘要

我们在厚度为 100 nm 的二氧化硅非晶膜上交叉两个飞秒极紫外(EUV)脉冲,产生了空间周期为 84 nm 的光强瞬态光栅(TG)。超紫外瞬态光栅激发有效地产生了兰姆波(LWs)和温度光栅,在两种不同的样品初始温度(50 K 和 300 K)下对其动力学进行了研究。在最低温度下,由于沿膜厚度的热平衡,LW 频率在时间上出现了明显的偏移。通过分析 EUV TG 波形,我们确定了热光栅的衰减时间和声衰减系数,两者均与文献资料相符。研究结果表明,EUV TG 可以提供对光学辐射透明的薄膜中的非平衡热弹性动力学信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature effects on the nanoscale thermoelastic response of a SiO2 membrane
We crossed two femtosecond extreme ultraviolet (EUV) pulses on a 100 nm thick amorphous membrane of SiO2, generating transient gratings (TGs) of light intensity with 84 nm spatial periodicity. The EUV TG excitation gave rise to the efficient generation of Lamb waves (LWs) and of a temperature grating, whose dynamics was studied at two different initial sample temperatures, 50 and 300 K. The short penetration depth of the EUV excitation pulses turned into a strong non-uniformity in the actual temperature as a function of the depth from the sample surface. At the lowest temperature, the LW frequencies presented a sizable shift in time due to the thermal equilibration along the membrane thickness. The analysis of the EUV TG waveforms allowed us to determine the decay time of the thermal grating and the sound attenuation coefficient, both found in reasonable agreement with the literature. The results show how EUV TG can provide information of non-equilibrium thermoelastic dynamics in thin membranes transparent to optical radiation.
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