Optimal protocol for spin-orbit torque switching of a perpendicular nanomagnet
Optimal protocol for spin-orbit torque switching of a perpendicular nanomagnet
It is demonstrated by means of the optimal control theory that the energy cost of the spin-orbit torque induced reversal of a nanomagnet with perpendicular anisotropy can be strongly reduced by proper shaping of both in-plane components of the current pulse. The time-dependence of the optimal switching pulse that minimizes the energy cost associated with Joule heating is derived analytically in terms of the required reversal time and material properties. The optimal reversal time providing a tradeoff between the switching speed and energy efficiency is obtained. A sweet-spot balance between the field-like and damping-like components of the spin-orbit torque is discovered; it permits for a particularly efficient switching by a down-chirped rotating current pulse whose duration does not need to be adjusted precisely.
Grzegorz J. Kwiatkowski、Pavel F. Bessarab、Igor S. Lobanov、Valery M. Uzdin、Sergei M. Vlasov
Science Institute of the University of Iceland 107 Reykjavik IcelandITMO University 197101 St. Petersburg RussiaITMO University 197101 St. Petersburg RussiaITMO University 197101 St. Petersburg RussiaITMO University 197101 St. Petersburg Russia
物理学
Grzegorz J. Kwiatkowski,Pavel F. Bessarab,Igor S. Lobanov,Valery M. Uzdin,Sergei M. Vlasov.Optimal protocol for spin-orbit torque switching of a perpendicular nanomagnet[EB/OL].(2022-03-02)[2025-05-23].https://arxiv.org/abs/2203.01167.点此复制
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