论文标题

探测超快结构相变的途径,以照亮CU2S中的过渡机制

Probing the pathway of an ultrafast structural phase transition to illuminate the transition mechanism in Cu2S

论文作者

Li, Junjie, Sun, Kai, Li, Jun, Meng, Qingping, Fu, Xuewen, Yin, Wei-Guo, Lu, Deyu, Li, Yan, Babzien, Marcus, Fedurin, Mikhail, Swinson, Christina, Malone, Robert, Palmer, Mark, Mathurin, Leanne, Mason, Ryan, Chen, Jingyi, Konik, Robert M., Cava, Robert J., Zhu, Yimei, Tao, Jing

论文摘要

在相变中将主要阶参数与二级参数分开,这对于强相关系统和量子材料中的过渡机制的解释至关重要。在这里,我们介绍了表现出吸引人特性的超离子CU2S纳米晶体中的结构相变通路的研究。利用超快电子衍射技术在动量空间和时间域中都敏感,我们区分了该系统中晶体对称性断裂和晶格扩展的动力学。我们能够沿着过渡途径遵循瞬态状态,因此可以观察主要和次级参数的动力学。基于这些观察结果,我们认为CU2S中结构相变的机理由电子 - 音波耦合主导。这种机制从先前的结果中提出了理解,其中重点仅仅是晶格扩展的动态观察。

Disentangling the primary order parameter from secondary order parameters in phase transitions is critical to the interpretation of the transition mechanisms in strongly correlated systems and quantum materials. Here we present a study of structural phase transition pathways in superionic Cu2S nanocrystals that exhibit intriguing properties. Utilizing ultrafast electron diffraction techniques sensitive in both momentum-space and the time-domain, we distinguish the dynamics of crystal symmetry breaking and lattice expansion in this system. We are able to follow the transient states along the transition pathway and so observe the dynamics of both the primary and secondary order parameters. Based on these observations we argue that the mechanism of the structural phase transition in Cu2S is dominated by the electron-phonon coupling. This mechanism advances the understanding from previous results where the focus was solely on dynamic observations of the lattice expansion.

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