Multipiezo Effect in Altermagnetic V<sub>2</sub>SeTeOMonolayer
Yu Zhu (250261), Taikang Chen (17701669), Yongchang Li (6946556), Lei Qiao (123899), Xiaonan Ma (478813), Chang Liu (35901), Tao Hu (422014), Heng Gao (619751) 等 9 位
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Strain engineering has been used as an efficient method to modulate various properties of quantum materials and electronic devices. One may establish piezo effects based on a disciplined response to the strain in multifunctional nanosystems. Inspired by a recent theoretical proposal on the interesting piezomagnetism and C-paired valley polarization in the V<sub>2</sub>Se<sub>2</sub>O monolayer, we predict a stable altermagnetic Janus monolayer V<sub>2</sub>SeTeO using density functional theory calculations. It exhibits a novel “multipiezo” effect combining piezoelectricity, piezovalley, and piezomagnetism. Most interestingly, the valley polarization and the net magnetization under strain in V<sub>2</sub>SeTeO exceed these in V<sub>2</sub>Se<sub>2</sub>O, along with the additional large piezoelectric coefficient. The “multipiezo” effect makes Janus monolayer V<sub>2</sub>SeTeO as a tantalizing material for potential applications in nanoelectronics, optoelectronics, spintronics, and valleytronics.
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