自旋电子学
去相
物理
自旋工程
自旋晶体管
自旋(空气动力学)
进动
凝聚态物理
自旋等离子体光子学
旋转泵
振荡(细胞信号)
自旋极化
量子力学
晶体管
拉莫尔进动
量子
桥接(联网)
横截面
位置和动量空间
零场分裂
自旋量子数
作者
L. Liu,Kai Shao,Hai-Dong Li,Xiangang Wan,Wei Chen,D. Y. Xing
摘要
Altermagnets hold great potential for spintronic applications, yet their intrinsic spin dynamics and associated transport properties remain largely unexplored. Here, we investigate spin-resolved quantum transport in a multiterminal setup based on a d-wave altermagnet. It is found that the altermagnetic spin splitting in momentum space induces an interesting spin precession in two-dimensional real space, giving rise to characteristic spin patterns. This altermagnetic spin precession manifests as a spatial modulation of the transverse Hall-like voltage, whose oscillation period provides a direct measure of the spin-splitting strength. When the altermagnetism is electrically tunable, the proposed setup functions as a prototype for a highly efficient spin transistor. The key physical effects are shown to be robust against dephasing and crystalline warping. Our Letter not only identifies a fingerprint signature of altermagnets, offering a direct probe of the altermagnetic spin splitting, but also represents an important step toward bridging their fundamental physics with practical spintronic applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI