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Exploration of metastability and hidden phases in correlated electron crystals visualized by femtosecond optical doping and electron crystallography

机译:由飞秒光学掺杂和电子晶体观察相关电子晶体中的母晶体中的母晶勘探

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Characterizing and understanding the emergence of multiple macroscopically ordered electronic phases through subtle tuning of temperature, pressure, and chemical doping has been a long-standing central issue for complex materials research. We report the first comprehensive studies of optical doping–induced emergence of stable phases and metastable hidden phases visualized in situ by femtosecond electron crystallography. The electronic phase transitions are triggered by femtosecond infrared pulses, and a temperature–optical density phase diagram is constructed and substantiated with the dynamics of metastable states, highlighting the cooperation and competition through which the macroscopic quantum orders emerge. These results elucidate key pathways of femtosecond electronic switching phenomena and provide an important new avenue to comprehensively investigate optical doping–induced transition states and phase diagrams of complex materials with wide-ranging applications.
机译:通过微妙调整温度,压力和化学掺杂的微妙调整表征和理解多种宏观有序电子阶段的出现是复杂材料研究的长期核心问题。我们报告了通过飞秒电子晶体学原位地视化的光学掺杂诱导的稳定阶段和亚稳隐藏阶段的第一综合研究。通过飞秒红外脉冲触发电子相变,并且通过亚稳态的动态构建和证实温度 - 光密度相图,突出了宏观量子顺序出现的合作和竞争。这些结果阐明了飞秒电子切换现象的关键途径,并提供了一个重要的新途径,以全面研究光学掺杂诱导的具有宽范围应用的复杂材料的相图。

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