Journal Article FZJ-2026-04118

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Frustrated magnetism in Mn films on Ag(111) surface: From chiral in-plane Néel state to row-wise antiferromagnetism

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2026
Inst. Woodbury, NY

Physical review / B 113(10), 104415 () [10.1103/twpb-shbv]

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Abstract: We conduct a comprehensive density functional theory study to explore the intricate magnetic properties of frustrated Mn monolayer on the Ag(111) surface. Spin-polarized scanning tunneling microscopy demonstrates that a Néel magnetic state characterizes such an interface, which contradicts systematic ab initio predictions made in the last two decades indicating that the ground state is collinear row-wise antiferromagnetic (RW- AFM) state. Here, we employ the all-electron full-potential Korringa-Kohn-Rostoker Green’s function method and find that the ground state is a chiral magnetic Néel state, with magnetic moments rotating in the surface plane following a unique sense of rotation, as dictated by the underlying in-plane magnetic anisotropy and Dzyaloshinskii-Moriya interaction. Changing the stacking of the Mn monolayer from fcc to hcp switches the chiral nature of the Néel state. Once allowing disordered magnetic states, as described within the disordered local moment approach, we reveal the possibility of stabilization of a RW-AFM state. We conjecture that at low temperatures, the chiral Néel state prevails, while at higher temperatures, the magnetic exchange interactions are modified by magnetic disorder, which can then induce a transition towards a RW-AFM state. Our work addresses a long-term experimental-theoretical controversy and provides significant insights into the magnetic interactions and stability of Mn films on noble metal substrates, contributing to the broader understanding of the differentmagnetic facets of frustrated magnetism in thin films.

Classification:

Contributing Institute(s):
  1. Quanten-Theorie der Materialien (PGI-1)
Research Program(s):
  1. 5211 - Topological Matter (POF4-521) (POF4-521)
  2. DFG project G:(GEPRIS)533767171 - EXC 3112: Zentrum für Chirale Elektronik (533767171) (533767171)
  3. DFG project G:(GEPRIS)462676712 - iAFMskyrmionen- Intrinsische antiferromagnetische Skyrmionen aus ersten Prinzipien: Von der Stabilisierung, der Interaktion mit Defekten bis zum effizienten Nachweis (462676712) (462676712)

Appears in the scientific report 2026
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 Record created 2026-08-18, last modified 2026-08-28


OpenAccess:
2412.15387v1 - Download fulltext PDF
twpb-shbv - Download fulltext PDF
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