Spin Current: Experimental and Theoretical Aspects
Sadamichi Maekawa, Hiroto Adachi, Ken‐ichi Uchida, Jun’ichi Ieda, Eiji Saitoh
Abstract
Sadamichi Maekawa, Hiroto Adachi, Ken‐ichi Uchida, Jun’ichi Ieda, Eiji Saitoh
Abstract
The flow of electron spin, the so-called "spin current", is a key concept in the recent progress in spintronics. When the spin current interacts with the magnetic moment in a ferromagnetic metal, the angular momentum and energy conservations give rise to the spin transfer torque and spinmotive force, respectively. When it is injected into a non-magnetic metal attached to a ferromagnet, the electric current is induced through the spin-charge conversion mechanism (inverse spin Hall effect). The generation and manipulation of the spin current and a variety of novel phenomena given by the spin current, including the spin Seebeck effect and spinmotive force, are discussed.
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The flow of electron spin, the so-called "spin current", is a key concept in the recent progress in spintronics. When the spin current interacts with the magnetic moment in a ferromagnetic metal, the angular momentum and energy conservations give rise to the spin transfer torque and spinmotive force, respectively. When it is injected into a non-magnetic metal attached to a ferromagnet, the electric current is induced through the spin-charge conversion mechanism (inverse spin Hall effect). The generation and manipulation of the spin current and a variety of novel phenomena given by the spin current, including the spin Seebeck effect and spinmotive force, are discussed.
Key concepts: Spintronics, Spin Hall effect, Spinplasmonics, Condensed matter physics, Spin pumping, Spin (aerodynamics), Spin-transfer torque, Spin polarization