缩放比例
凝聚态物理
相变
钛酸钡
钙钛矿(结构)
猝灭(荧光)
物理
非平衡态热力学
分子动力学
材料科学
铁电性
相(物质)
临界指数
中子散射
散射
热力学
化学
量子力学
结晶学
电介质
数学
几何学
荧光
作者
Nitish Baradwaj,Aravind Krishnamoorthy,Ken‐ichi Nomura,Aiichiro Nakano,Rajiv K. Kalia,Priya Vashishta
摘要
Far-from-equilibrium phase transition dynamics is one of the grand challenges in modern materials science. A theoretical landmark is the Kibble–Zurek (KZ) scaling to describe the relationship between the temperature quenching rate and the resulting defect density in the vicinity of symmetry-breaking phase transformations. Despite the confirmation of the KZ scaling in ferroic perovskite materials and macroscopic simulations, its atomistic mechanisms remain elusive. Here, we demonstrate the KZ scaling using all-atom molecular dynamics simulations for a prototypical ferroelectric perovskite, barium titanate, with the scaling exponent corresponding to the theoretical prediction for rapid quenching. Simulated diffuse neutron scattering data are presented to guide future experiments.
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