Magnonic Charge Pumping via Spin-Orbit Coupling
Chiara Ciccarelli, Kjetil M. D. Hals, Andrew Irvine, Vit Novak,, Yaroslav Tserkovnyak, Hidekazu Kurebayashi, Arne Brataas, Andrew Ferguson

TL;DR
This paper demonstrates the experimental observation of charge pumping from a precessing ferromagnet via spin-orbit coupling, enabling direct electrical detection of magnetisation dynamics without additional conversion layers.
Contribution
It introduces a novel charge pumping mechanism driven by spin-orbit interaction, providing a direct electrical detection method for magnetisation precession.
Findings
Charge current generated by precessing ferromagnet via spin-orbit coupling.
Direct detection of magnetisation dynamics without spin-charge conversion layers.
Deeper understanding of spin-orbit torques and their reciprocal effects.
Abstract
The interplay between spin, charge, and orbital degrees of freedom has led to the development of spintronic devices like spin-torque oscillators, spin-logic devices, and spin-transfer torque magnetic random-access memories. In this development spin pumping, the process where pure spin-currents are generated from magnetisation precession, has proved to be a powerful method for probing spin physics and magnetisation dynamics. The effect originates from direct conversion of low energy quantised spin-waves in the magnet, known as magnons, into a flow of spins from the precessing magnet to adjacent normal metal leads. The spin-pumping phenomenon represents a convenient way to electrically detect magnetisation dynamics, however, precessing magnets have been limited so far to pump pure spin currents, which require a secondary spin-charge conversion element such as heavy metals with large spin…
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Taxonomy
TopicsMagnetic and transport properties of perovskites and related materials · Magnetic properties of thin films · Magnetic Field Sensors Techniques
