Yang Qing, Meng Sheng
Beijing National Laboratory for Condensed Matter Physics and <a href="https://ror.org/05cvf7v30">Institute of Physics, Chinese Academy of Sciences</a>, Beijing 100190, China.
College of Physics and Electronic Science, Hubei Key Laboratory of Photoelectric Materials and Devices, <a href="https://ror.org/056y3dw16">Hubei Normal University</a>, Huangshi 435002, China.
Phys Rev Lett. 2024 Sep 27;133(13):136902. doi: 10.1103/PhysRevLett.133.136902.
Previous experiments have provided evidence of sliding ferroelectricity and photoexcited interlayer shear displacement in two-dimensional materials, respectively. Herein, we find that a complete reversal of vertical ferroelectric polarization can be achieved within an astonishing 0.5 ps in h-BN bilayer by laser illumination. Comprehensive analysis suggests that ferroelectric polarization switching originates from laser-induced interlayer sliding triggered by selective excitation of multiple phonons. The interlayer electron excitation from the p_{z} orbitals of the upper layer N atoms to the p_{z} orbitals of the lower layer B atoms produces desirable and directional interlayer forces activating the in-plane optical TO-1 and LO-1 phonon modes. The atomic motions driven by the coupling of TO-1 and LO-1 modes are coherent with ferroelectric soft mode, thus modulating the dynamical potential energy surface and resulting in ultrafast ferroelectric polarization reversal. Our work provides a novel microscopic insight into ultrafast polarization switching in sliding ferroelectrics.
先前的实验分别提供了二维材料中滑动铁电性和光激发层间剪切位移的证据。在此,我们发现通过激光照射,h-BN双层中的垂直铁电极化可在惊人的0.5皮秒内完全反转。综合分析表明,铁电极化切换源于由多个声子的选择性激发触发的激光诱导层间滑动。从上层N原子的p_z轨道到下层B原子的p_z轨道的层间电子激发产生了理想的定向层间力,激活了面内光学TO-1和LO-1声子模式。由TO-1和LO-1模式耦合驱动的原子运动与铁电软模式相干,从而调制动态势能面并导致超快铁电极化反转。我们的工作为滑动铁电体中的超快极化切换提供了一种新颖的微观见解。