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  6. TR 288: Elastic Tuning and Response of Electronic Quantum Phases of Matter of Electronic Q
  7. TR 288 - Elasto-Q-Mat: Research Data
  8. Epitaxial growth and magnetic phase transitions in non-centrosymmetric EuPdSi3 thin films
 
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Title(s)
TitleLanguage
Epitaxial growth and magnetic phase transitions in non-centrosymmetric EuPdSi3 thin films
en
 
Author(s)
NameORCIDGNDAffiliation
Kölsch, Sebastian 
0000-0003-3596-964X
Physics 
 
Project(s)
Strain effects in thin films of correlated intermetallic compounds (A04) 
 
Faculty
13 Physics
 
Date Issued
13 April 2026
 
Publisher(s)
Goethe-Universität Frankfurt
 
Handle
https://gude.uni-frankfurt.de/handle/gude/764
 
DOI
10.25716/gude.03pw-qp6e
 

Type(s) of data
Text
 
Language(s)
en
 
Abstract(s)
AbstractLanguage
Non-centrosymmetric magnetic materials are a promising platform for stabilizing chiral spin textures, such as skyrmions and cycloidal magnetic states.
This is particularly true in epitaxial thin film geometries, where strain and interface effects offer additional control.
Herein, we report on the first epitaxial thin films of EuPdSi3 grown by molecular beam epitaxy on MgO(001).
X-ray diffraction confirms an epitaxial relationship of tetragonal EuPdSi3 in the BaNiSn3 structure with out-of-plane c-axis orientation and parallel in-plane a-axes.
Hard X-ray photoelectron spectroscopy reveals a stable Eu valence of 2.0, yielding a large magnetic moment of approximately 7 µB per Eu atom in accordance with Hund’s rule.
Owing to the non-centrosymmetric crystal structure, non-collinear magnetic states such as Néel-type skyrmions and cycloidal phases are allowed by symmetry.
Electronic transport measurements reveal two magnetic phase transitions at 19 K and 15 K in zero applied field.
Under magnetic fields applied along the crystallographic [100] and [001] directions, distinct temperature dependent magnetic phases emerge, demonstrating the sensitivity of the magnetic ground state to field orientation in epitaxial EuPdSi3 thin films.
en
 

License
Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) cclicense-logocclicense-logocclicense-logocclicense-logo
 

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