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Unconventional Spin Relaxation Involving Localized Vibrational Modes in Ho Single-Atom Magnets

Title
Unconventional Spin Relaxation Involving Localized Vibrational Modes in Ho Single-Atom Magnets
Authors
Donati, F.Rusponi, S.Stepanow, S.Persichetti, L.Singha, A.Juraschek, D. M.Wackerlin, C.Baltic, R.Pivetta, M.Diller, K.Nistor, C.Dreiser, J.Kummer, K.Velez-Fort, E.Spaldin, N. A.Brune, H.Gambardella, P.
Ewha Authors
Fabio Donati
SCOPUS Author ID
Fabio Donatiscopus
Issue Date
2020
Journal Title
PHYSICAL REVIEW LETTERS
ISSN
0031-9007JCR Link

1079-7114JCR Link
Citation
PHYSICAL REVIEW LETTERS vol. 124, no. 7
Publisher
AMER PHYSICAL SOC
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
We investigate the spin relaxation of Ho single atom magnets on MgO/Ag(100) as a function of temperature and magnetic field. We find that the spin relaxation is thermally activated at low field, while it remains larger than 1000 s up to 30 K and 8 T. This behavior contrasts with that of single molecule magnets and bulk paramagnetic impurities, which relax faster at high field. Combining our results with density functional theory, we rationalize this unconventional behavior by showing that local vibrations activate a two-phonon Raman process with a relaxation rate that peaks near zero field and is suppressed at high field. Our work shows the importance of these excitations in the relaxation of axially coordinated magnetic atoms.
DOI
10.1103/PhysRevLett.124.077204
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자연과학대학 > 물리학전공 > Journal papers
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