Cheng Chih-Cheng, Chen Yu-Jen, Lin Shin-Hung, Wang Hsin-Min, Lin Guang-Ping, Chung Tien-Kan
Department of Mechanical Engineering, National Yang Ming Chiao Tung University, Hsinchu 30010, Taiwan.
Electronic and Optoelectronic System Research Laboratories, Industrial Technology Research Institute, Hsinchu 310401, Taiwan.
Micromachines (Basel). 2023 Dec 23;15(1):36. doi: 10.3390/mi15010036.
We report the magnetic-field-assisted electric-field-controlled domain switching of a magnetic single domain in a multiferroic/magnetoelectric Ni nanochevrons/[Pb(MgNb)O]-[PbTiO] (PMN-PT) layered structure. Initially, a magnetic field was applied in the transverse direction across single-domain Ni nanochevrons to transform each of them into a two-domain state. Subsequently, an electric field was applied to the layered structure, exerting the converse magnetoelectric effect to transform/release the two-domain Ni nanochevrons into one of two possible single-domain states. Finally, the experimental results showed that approximately 50% of the single-domain Ni nanochevrons were switched permanently after applying our approach (i.e., the magnetization direction was permanently rotated by 180 degrees). These results mark important advancements for future nanoelectromagnetic systems.
我们报道了在多铁性/磁电镍纳米 Chevron 结构/[铅(镁铌)氧化物]-[钛酸铅](PMN-PT)层状结构中,通过磁场辅助实现电场控制的磁性单畴翻转。最初,在横向施加磁场穿过单畴镍纳米 Chevron 结构,将每个结构转变为双畴状态。随后,对层状结构施加电场,利用逆磁电效应将双畴镍纳米 Chevron 结构转变/释放为两种可能的单畴状态之一。最后,实验结果表明,应用我们的方法后,约 50%的单畴镍纳米 Chevron 结构被永久翻转(即磁化方向永久旋转 180 度)。这些结果标志着未来纳米电磁系统取得了重要进展。