Yao Hulin, Zheng Pengcheng, Zhang Shibin, Hu Chuanjie, Fang Xiaoli, Zhang Liping, Ling Dan, Chen Huanyang, Ou Xin
State Key Laboratory of Materials for Integrated Circuits, Chinese Academy of Sciences, 865 Changning Road, Shanghai, 200050, China.
The Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, 19 Yuquan Road, Beijing, 100049, China.
Nat Commun. 2024 Jun 12;15(1):5002. doi: 10.1038/s41467-024-49321-x.
Twisted a pair of stacked two-dimensional materials exhibit many exotic electronic and photonic properties, leading to the emergence of flat-band superconductivity, moiré engineering and topological polaritons. These remarkable discoveries make twistronics the focus point of tremendous interest, but mostly limited to the concept of electrons, phonons or photons. Here, we present twist piezoelectricity as a fascinating paradigm to modulate polarization and electromechanical coupling by twisting precisely the stacked lithium niobate slabs due to the interlayer coupling effect. Particularly, the inversed and twisted bilayer lithium niobate is constructed to overcome the intrinsic mutual limitation of single crystals and giant effective electromechanical coupling coefficient is unveiled at magic angle of , reaching 85.5%. Theoretical analysis based on mutual energy integrals shows well agreements with numerical and experimental results. Our work opens new venues to flexibly control multi-physics with magic angle, stimulating progress in wideband acoustic-electric, and acoustic-optic components, which has great potential in wireless communication, timing, sensing, and hybrid integrated photonics.
扭曲的一对堆叠二维材料展现出许多奇异的电子和光子特性,从而导致平带超导、莫尔工程和拓扑极化激元的出现。这些非凡的发现使扭曲电子学成为极大关注的焦点,但大多局限于电子、声子或光子的概念。在此,我们提出扭曲压电性这一引人入胜的范例,通过由于层间耦合效应精确扭曲堆叠的铌酸锂平板来调制极化和机电耦合。特别地,构建了反转和扭曲的双层铌酸锂以克服单晶的固有相互限制,并且在神奇角度 揭示了巨大的有效机电耦合系数,达到85.5%。基于互能积分的理论分析与数值和实验结果显示出良好的一致性。我们的工作开辟了利用神奇角度灵活控制多物理场的新途径,推动宽带声电和声光组件的进展,这在无线通信、定时、传感和混合集成光子学方面具有巨大潜力。