Spintronic devices are driving new paradigms of bio-inspired,energy efficient computation like neuromorphic stochastic computing and in-memory computing.They have also emerged as key candidates for non-volatile memori...
the National Natural Science Foundation of China(Grant No.11574375).
The current-induced spin-orbit torque(SOT)plays a dominant role to manipulate the magnetization in a heavy metal/ferromagnetic metal bilayer.We separate the contributions of interfacial and bulk spin-orbit coupling(SO...
The simulations were performed using Bridges at the Pittsburgh Supercomputing Center through allocation TG-DMR180076;which is part of the Extreme Science and Engineering Discovery Environment(XSEDE)and supported by NSF grant ACI-1548562.
Magnetic-field-free current-controlled switching of perpendicular magnetization via spin-orbit torque(SOT)is necessary for developing a fast,long data retention,and high-density SOT magnetoresistive random access memo...
K.C.,K.F.G.and F.T.thank National Institute of Standards and Technology for funding,computational and data-management resources;K.C.also thank the computational support from XSEDE computational resources under allocation number(TG-DMR 190095).
Two-dimensional topological materials(2D TMs)have a variety of properties that make them attractive for applications including spintronics and quantum computation.However,there are only a few such experimentally known...
Acknowledgements This work was supported by the Basic Research Program of Ministry of Science and Technology of China (Grant No. 2015CB932400), the National Natural Science Foundation of China (Grants Nos. 11134013, 11227407, 11374012, and 11422436). We thank Professor Zong-Hong Zhu for the helpful discussion.
The spin-orbit interaction (SOI) of light has been intensively studied in nanophotonics because it enables sensitive control of photons' spin degree of freedom and thereby the trajectories of the photons, which is ...
University of Kashan for supporting this work by Grant No.463821/03
We study the spin-resolved transport in a two-terminal graphene nanoflake device with a Rashba spinorbit coupling region in the center of the device. The Green's function method is applied to the system and the spin t...
Supported by National Program for Basic Research of MOST(973 grant);by National Natural Science Foundation of China under Grant Nos.11121063,11174360,11374354,11274195,2011CB606405 and 2013CB922000
We study the topological properties of spin-orbit coupled s-wave superconductor in one-dimensional optical lattice. Compared to its corresponding continuum model, the single particle spectrum is modified by the optica...
While the ferroelectricity in type-II multiferroic rare-earth manganites is believed to be generated by the inverse Dzyaloshinskii-Moriya (DM) interaction (spin orbit coupling) associated with the Mn spiral spin o...