Liu Gan, Qiu Tianyu, He Kuanyu, Liu Yizhou, Lin Dongjing, Ma Zhen, Huang Zhentao, Tang Wenna, Xu Jie, Watanabe Kenji, Taniguchi Takashi, Gao Libo, Wen Jinsheng, Liu Jun-Ming, Yan Binghai, Xi Xiaoxiang
National Laboratory of Solid State Microstructures and Department of Physics, Nanjing University, Nanjing, China.
Department of Condensed Matter Physics, Weizmann Institute of Science, Rehovot, Israel.
Nat Nanotechnol. 2023 Aug;18(8):854-860. doi: 10.1038/s41565-023-01403-5. Epub 2023 May 11.
Hysteretic switching of domain states is a salient characteristic of all ferroic materials and the foundation for their multifunctional applications. Ferro-rotational order is emerging as a type of ferroic order that features structural rotations, but control over state switching remains elusive due to its invariance under both time reversal and spatial inversion. Here we demonstrate electrical switching of ferro-rotational domain states in the charge-density-wave phases of nanometre-thick 1T-TaS crystals. Cooling from the high-symmetry phase to the ferro-rotational phase under an external electric field induces domain state switching and domain wall formation, which is realized in a simple two-terminal configuration using a volt-scale bias. Although the electric field does not couple with the order due to symmetry mismatch, it drives domain wall propagation to give rise to reversible, durable and non-volatile isothermal state switching at room temperature. These results offer a route to the manipulation of ferro-rotational order and its nanoelectronic applications.
畴态的滞后切换是所有铁电材料的一个显著特征,也是它们多功能应用的基础。铁旋转序作为一种以结构旋转为特征的铁电序正在兴起,但由于其在时间反演和空间反演下的不变性,对其态切换的控制仍然难以实现。在此,我们展示了在纳米厚的1T-TaS晶体的电荷密度波相中铁旋转畴态的电切换。在外部电场下从高对称相冷却到铁旋转相会诱导畴态切换和畴壁形成,这在使用伏特级偏置的简单双端配置中得以实现。尽管由于对称性不匹配电场与该序不耦合,但它驱动畴壁传播,从而在室温下实现可逆、持久和非易失性的等温态切换。这些结果为铁旋转序的操控及其纳米电子应用提供了一条途径。