5 papers
Nitrospinics as a platform from orbital-torque memory to artificial intelligence
Prabhat Kumar, Gaurav Kumar Shukla, Yoshio Miura +1
The exploration of energy-efficient and functional spintronics has attracted considerable attention. Orbital transport has opened new pathways for current-induced torque generation…
Efficient magnetization switching driven by orbital torque originating from light 3d-transition-metal nitrides
Gaurav K. Shukla, Yoshio Miura, Mayank K. Singh +1
The orbital Hall effect (OHE) in light transition metals offers a promising route to generate orbital torques for efficient magnetization control, providing an alternative to conve…
Unconventional Spin-orbit Torques by Two-dimensional Multilayered MXenes for Future Nonvolatile Magnetic Memories
Prabhat Kumar, Yoshio Miura, Yoshinori Kotani +4
MXenes have attracted considerable attention in recent years owing to their two-dimensional (2D) layered structures with various functionalities similar to those of graphene and tr…
Induced magnetic moment at two-dimensional MXene/ferromagnetic interface evaluated by angle-dependent hard X-ray photoemission spectroscopy
Prabhat Kumar, Shunsuke Tsuda, Koichiro Yaji +1
Emergent ferromagnetism on the surface of recent two-dimensional (2D) MXene is investigated by X-ray magnetic circular dichroism (XMCD) and angle-dependent hard X-ray photoemission…
Berry curvature-induced intrinsic spin Hall effect in light-element-based CrN system for magnetization switching
Gaurav K. Shukla, Prabhat Kumar, Shinji Isogami
The current-induced spin-orbit torque-based devices for magnetization switching are commonly relied on the 4d and 5d heavy metals owing to their strong spin-orbit coupling (SOC) to…