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Ultrafast time-resolved electron diffraction revealing the nonthermal dynamics of near-UV photoexcitation-induced amorphization in Ge2Sb2Te5

机译:超快时间分辨电子衍射,揭示了近UV光透镜诱导的Ge 2 Sb 2 Te 5 的非热动态动力学

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Because of their robust switching capability, chalcogenide glass materials have been used for a wide range of applications, including optical storages devices. These phase transitions are achieved by laser irradiation via thermal processes. Recent studies have suggested the potential of nonthermal phase transitions in the chalcogenide glass material Ge2Sb2Te5 triggered by ultrashort optical pulses; however, a detailed understanding of the amorphization and damage mechanisms governed by nonthermal processes is still lacking. Here we performed ultrafast time-resolved electron diffraction and single-shot optical pump-probe measurements followed by femtosecond near-ultraviolet pulse irradiation to study the structural dynamics of polycrystalline Ge2Sb2Te5. The experimental results present a nonthermal crystal-to-amorphous phase transition of Ge2Sb2Te5 initiated by the displacements of Ge atoms. Above the fluence threshold, we found that the permanent amorphization caused by multi-displacement effects is accompanied by a partial hexagonal crystallization.
机译:由于其稳健的开关能力,硫属化物玻璃材料已用于广泛的应用,包括光学储存器件。通过热过程激光照射来实现这些相变。最近的研究表明,硫属化物玻璃材料Ge 2 sb 2 te 5 由超短光脉冲触发的潜力;但是,仍然缺乏对由非热进程治理的非主体化和损坏机制的详细了解。在这里,我们进行了超快时间分辨电子衍射和单次光学泵探针测量,然后进行了飞秒近紫外线脉冲辐照,以研究多晶GE 2 Sb 2 TE 5 。实验结果呈现了Ge 2 sb 2 te 5 的非热晶体至无定形相转变,由GE原子的位移发起。在流量阈值之上,我们发现由多偏移效应引起的永久性混合物伴随着部分六方结晶。

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