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Atomic spin sensitive dissipation on magnetic surfaces

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arxiv 1010.4880 v1 pith:Q274QOGF submitted 2010-10-23 cond-mat.mtrl-sci cond-mat.other

Atomic spin sensitive dissipation on magnetic surfaces

classification cond-mat.mtrl-sci cond-mat.other
keywords dissipationmagneticspinatomicexchangeregimetip-surfacetips
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We identify the mechanism of energy dissipation relevant to spin-sensitive nanomechanics including the recently introduced magnetic exchange force microscopy, where oscillating magnetic tips approach surface atomic spins. The tip-surface exchange couples spin and atom coordinates, leading to a spin-phonon problem with Caldeira-Leggett type dissipation. In the overdamped regime, that can lead to a hysteretic flip of the local spin with a large spin-dependent dissipation, even down to the very low experimental tip oscillation frequencies, describing recent observations for Fe tips on NiO. A phase transition to an underdamped regime with dramatic drop of magnetic tip dissipation should in principle be possible by tuning tip-surface distance.

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