Disorder strength and field-driven ground state domain formation in artificial spin ice: experiment, simulation, and theory

Quenched disorder affects how nonequilibrium systems respond to driving. In the context of artificial spin ice, an athermal system comprised of geometrically frustrated classical Ising spins with a twofold degenerate ground state, we give experimental and numerical evidence of how such disorder wash...

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Veröffentlicht in:Physical review letters 2012-07, Vol.109 (3), p.037203-037203, Article 037203
Hauptverfasser: Budrikis, Zoe, Morgan, J P, Akerman, J, Stein, A, Politi, Paolo, Langridge, S, Marrows, C H, Stamps, R L
Format: Artikel
Sprache:eng
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Zusammenfassung:Quenched disorder affects how nonequilibrium systems respond to driving. In the context of artificial spin ice, an athermal system comprised of geometrically frustrated classical Ising spins with a twofold degenerate ground state, we give experimental and numerical evidence of how such disorder washes out edge effects and provide an estimate of disorder strength in the experimental system. We prove analytically that a sequence of applied fields with fixed amplitude is unable to drive the system to its ground state from a saturated state. These results should be relevant for other systems where disorder does not change the nature of the ground state.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.109.037203