材料科学
钙钛矿(结构)
调制(音乐)
凝聚态物理
非线性光学
非线性系统
光电子学
物理
化学
量子力学
结晶学
声学
标识
DOI:10.1088/1674-1056/adf5a5
摘要
Abstract Strong long-wavelength laser pulses enable direct manipulation of atomic lattices for engineering novel quantum states in complex materials. Nonlinear coupling between two infrared-active phonon modes (TO 1 and TO 2 ), induced by intense terahertz light fields, significantly enhances the amplitude of the TO 1 mode and facilitates ultrafast control of transient structural distortions. This light-induced distortion reduces the lattice thermal conductivity from 8.1 W·m -1 ·K -1 to 3.0 W·m -1 ·K -1 . The reduction originates from the nonlinear coupling, which enhances anharmonic interactions in the lattice potential energy and substantially shortens the phonon lifetime (τ). This work demonstrates a strategy applicable to other perovskite materials and provides a framework for investigating light-induced electrical, optical, and thermodynamic phase transitions.
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