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Many-Body Theory of Ultrafast Demagnetization and Angular Momentum Transfer in Ferromagnetic Transition Metals



Details zur Publikation
Autor(inn)en:
Töws, W.; Pastor, G.
Verlag:
AMER PHYSICAL SOC
Verlagsort / Veröffentlichungsort:
ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA

Publikationsjahr:
2015
Zeitschrift:
Physical Review Letters
Seitenbereich:
217204
Abkürzung der Fachzeitschrift:
Phys. Rev. Lett.
Jahrgang/Band :
115
Heftnummer:
21
ISSN:
0031-9007
eISSN:
1079-7114
DOI-Link der Erstveröffentlichung:


Zusammenfassung, Abstract
Exact calculated time evolutions in the framework of a many-electron model of itinerant magnetism provide new insights into the laser-induced ultrafast demagnetization observed in ferromagnetic ( FM) transition metal thin films. The interplay between local spin-orbit interactions and interatomic hopping is shown to be at the origin of the observed postexcitation breakdown of FM correlations between highly stable local magnetic moments. The mechanism behind spin-and angular-momentum transfer is revealed from a microscopic perspective by rigorously complying with all fundamental conservation laws. An energy-resolved analysis of the time evolution shows that the efficiency of the demagnetization process reaches almost 100\% in the excited states.


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Zuletzt aktualisiert 2022-26-04 um 13:59