Gauge fields in real and momentum spaces in magnets: monopoles and skyrmions
Author(s) -
Naoto Nagaosa,
Xiuzhen Yu,
Yoshinori Tokura
Publication year - 2012
Publication title -
philosophical transactions of the royal society a mathematical physical and engineering sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.074
H-Index - 169
eISSN - 1471-2962
pISSN - 1364-503X
DOI - 10.1098/rsta.2011.0405
Subject(s) - skyrmion , physics , gauge (firearms) , magnet , magnetic monopole , momentum (technical analysis) , quantum electrodynamics , gauge theory , classical mechanics , theoretical physics , particle physics , quantum mechanics , materials science , finance , economics , metallurgy
Electronic states in magnets are characterized by the quantum mechanical Berry phase defined in both the real and momentum spaces. This Berry phase constitutes the gauge fields, i.e. the emergent electromagnetic fields in solids, and affects the motion of the electrons. In momentum space, the band crossings act as the magnetic monopoles, i.e. the sources or sinks of the gauge flux. In real space, the spin textures with non-coplanar spin configurations produce the gauge field by the solid angle leading to the spin chirality. Skyrmion is the representative structure supporting this gauge field. A typical phenomenon reflecting this gauge field is the anomalous Hall effect, i.e. the Hall effect produced by the spontaneous magnetization combined with the relativistic spin-orbit interaction. We discuss a few examples recently studied related to these issues with some new results on skyrmion formation.
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