Chen Guangyi, Qi Shaomian, Liu Jianqiao, Chen Di, Wang Jiongjie, Yan Shili, Zhang Yu, Cao Shimin, Lu Ming, Tian Shibing, Chen Kangyao, Yu Peng, Liu Zheng, Xie X C, Xiao Jiang, Shindou Ryuichi, Chen Jian-Hao
International Center for Quantum Materials, School of Physics, Peking University, Beijing, China.
Beijing Academy of Quantum Information Sciences, Beijing, China.
Nat Commun. 2021 Nov 1;12(1):6279. doi: 10.1038/s41467-021-26523-1.
Van der Waals magnets have emerged as a fertile ground for the exploration of highly tunable spin physics and spin-related technology. Two-dimensional (2D) magnons in van der Waals magnets are collective excitation of spins under strong confinement. Although considerable progress has been made in understanding 2D magnons, a crucial magnon device called the van der Waals magnon valve, in which the magnon signal can be completely and repeatedly turned on and off electrically, has yet to be realized. Here we demonstrate such magnon valves based on van der Waals antiferromagnetic insulator MnPS. By applying DC electric current through the gate electrode, we show that the second harmonic thermal magnon (SHM) signal can be tuned from positive to negative. The guaranteed zero crossing during this tuning demonstrates a complete blocking of SHM transmission, arising from the nonlinear gate dependence of the non-equilibrium magnon density in the 2D spin channel. Using the switchable magnon valves we demonstrate a magnon-based inverter. These results illustrate the potential of van der Waals anti-ferromagnets for studying highly tunable spin-wave physics and for application in magnon-base circuitry in future information technology.
范德华磁体已成为探索高度可调谐自旋物理和自旋相关技术的一片沃土。范德华磁体中的二维(2D)磁振子是在强限制条件下自旋的集体激发。尽管在理解二维磁振子方面已经取得了相当大的进展,但一种关键的磁振子器件——范德华磁振子阀,其中磁振子信号可以通过电方式完全且重复地打开和关闭,尚未实现。在此,我们展示了基于范德华反铁磁绝缘体MnPS的此类磁振子阀。通过向栅电极施加直流电流,我们表明二次谐波热磁振子(SHM)信号可以从正调谐到负。在此调谐过程中保证的零交叉表明SHM传输被完全阻断,这是由于二维自旋通道中非平衡磁振子密度的非线性栅极依赖性所致。使用可切换磁振子阀,我们展示了一种基于磁振子的逆变器。这些结果说明了范德华反铁磁体在研究高度可调谐自旋波物理以及在未来信息技术中的磁振子基电路应用方面的潜力。