DeCamp M F, DiChiara A D, Unruh K M
Department of Physics and Astronomy, University of Delaware, Newark, Delaware 19716, USA.
Advanced Photon Source, Argonne National Laboratory, 9700 S. Cass Ave., Argonne, Illinois 60439, USA.
AIP Adv. 2021 Nov 8;11(11):115111. doi: 10.1063/5.0067770. eCollection 2021 Nov.
The structural evolution of a Pt thin film following photo-thermal excitation by 1 ps optical laser pulses was studied with a time resolution of 100 ps over a total time period of 1 ms. Laser pulse fluences below 50 mJ/cm were insufficient to relax the residual stress state of the as-prepared film even after 10 000 pulses. In this fluence regime, a rapid initial lattice expansion and a decrease in the lattice coherence length due to ultrafast photo-thermal heating were observed. The lattice expansion reached a maximum, and the coherence length reached a minimum, 100-200 ps after excitation before monotonically decaying back to their initial values in about 1 s. Laser pulse fluences greater than 50 mJ/cm produced irreversible stress relaxation within the first 10 optical pulses. In this regime, the lattice expansion was qualitatively similar to that in the low fluence regime, except that the initial structural state was not recovered. The evolution in the coherence length, however, was more complex. Following an initial decrease similar to that observed at low fluence, the coherence length then increased to a broad maximum greater than the initial value, before recovery.
利用100 ps的时间分辨率,在1 ms的总时间段内研究了1 ps光激光脉冲光热激发后铂薄膜的结构演变。即使在10000次脉冲后,低于50 mJ/cm²的激光脉冲能量密度也不足以缓解制备态薄膜的残余应力状态。在此能量密度范围内,观察到由于超快光热加热导致的快速初始晶格膨胀和晶格相干长度减小。晶格膨胀在激发后100 - 200 ps达到最大值,相干长度达到最小值,然后在约1 s内单调衰减回到其初始值。大于50 mJ/cm²的激光脉冲能量密度在最初的10次光脉冲内产生了不可逆的应力松弛。在此范围内,晶格膨胀在定性上与低能量密度范围内相似,只是初始结构状态没有恢复。然而,相干长度的演变更为复杂。在经历了与低能量密度下观察到的类似的初始减小之后,相干长度随后增加到一个大于初始值的宽最大值,然后恢复。