飞秒
激光器
材料科学
超短脉冲
激发
无定形固体
相变
相(物质)
光学
原子物理学
分子物理学
物理
结晶学
化学
工程物理
量子力学
作者
Eiichiro Matsubara,Shigeto Okada,Tetsu Ichitsubo,Tomoya Kawaguchi,Akihiko Hirata,Pengfei Guan,Keiichi Tokuda,Katsumi Tanimura,Toshiyuki Matsunaga,Mingwei Chen,Noboru Yamada
标识
DOI:10.1103/physrevlett.117.135501
摘要
Despite the fact that phase-change materials are widely used for data storage, no consensus exists on the unique mechanism of their ultrafast phase change and its accompanied large and rapid optical change. By using the pump-probe observation method combining a femtosecond optical laser and an x-ray free-electron laser, we substantiate experimentally that, in both GeTe and Ge_{2}Sb_{2}Te_{5} crystals, rattling motion of mainly Ge atoms takes place with keeping the off-center position just after femtosecond-optical-laser irradiation, which eventually leads to a higher symmetry or disordered state. This very initial rattling motion in the undistorted lattice can be related to instantaneous optical change due to the loss of resonant bonding that characterizes GeTe-based phase change materials. Based on the amorphous structure derived by first-principles molecular dynamics simulation, we infer a plausible ultrafast amorphization mechanism via nonmelting.
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