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- W2283571618 endingPage "1540006" @default.
- W2283571618 startingPage "1540006" @default.
- W2283571618 abstract "We review recent theoretical progress in our understanding of electron-driven novel magnetic phases on frustrated lattices. Our specific focus is on Kondo-lattice or double-exchange models assuming finite magnetic moments localized at the lattice sites. A salient feature of systems with SU(2) symmetric local moments is the emergence of noncoplanar magnetic ordering driven by the conduction electrons. The complex spin textures then endow the electrons a nontrivial Berry phase, often giving rise to a topologically nontrivial electronic state. The second part of the review is devoted to the discussion of metallic spin ice systems, which are essentially frustrated Ising magnets with local spin ordering governed by the so-called ice rules. These rules are similar to those that describe proton configurations in solid water ice, hence the name spin ice. The nontrivial spin correlations in the ice phase give rise to unusual electron transport properties in metallic spin-ice systems." @default.
- W2283571618 created "2016-06-24" @default.
- W2283571618 creator A5010280063 @default.
- W2283571618 date "2015-06-01" @default.
- W2283571618 modified "2023-10-16" @default.
- W2283571618 title "Novel Magnetic Orders and Ice Phases in Frustrated Kondo-Lattice Models" @default.
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- W2283571618 doi "https://doi.org/10.1142/s2010324715400068" @default.