Surface-Localized Magnetic Order in RuO2 Thin Films Revealed by Low-Energy Muon Probes

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Main Authors: Akashdeep, Akashdeep, Krishnia, Sachin, Ha, Jae-Hyun, An, Siyeon, Gaerner, Maik, Prokscha, Thomas, Suter, Andreas, Janka, Gianluca, Reiss, Günter, Kuschel, Timo, Han, Dong-Soo, Di Bernardo, Angelo, Salman, Zaher, Jakob, Gerhard, Kläui, Mathias
Format: Preprint
Published: 2025
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author Akashdeep, Akashdeep
Krishnia, Sachin
Ha, Jae-Hyun
An, Siyeon
Gaerner, Maik
Prokscha, Thomas
Suter, Andreas
Janka, Gianluca
Reiss, Günter
Kuschel, Timo
Han, Dong-Soo
Di Bernardo, Angelo
Salman, Zaher
Jakob, Gerhard
Kläui, Mathias
author_facet Akashdeep, Akashdeep
Krishnia, Sachin
Ha, Jae-Hyun
An, Siyeon
Gaerner, Maik
Prokscha, Thomas
Suter, Andreas
Janka, Gianluca
Reiss, Günter
Kuschel, Timo
Han, Dong-Soo
Di Bernardo, Angelo
Salman, Zaher
Jakob, Gerhard
Kläui, Mathias
contents Ruthenium dioxide (RuO2) has recently emerged as a candidate altermagnet, yet its intrinsic magnetic ground state, particularly in thin films, remains debated. This study aims to clarify the nature and spatial extent of the magnetic order in RuO2 thin films grown under different conditions. Thin films of RuO2 with thicknesses of 30 nm and 33 nm are fabricated by pulsed laser deposition and sputtering onto TiO2(110) and Al2O3(1-102) substrates, respectively. Low-energy muon spin rotation/relaxation (LE-muSR) with depth-resolved sensitivity measurements is performed in transverse magnetic fields (TF) from 4 K to 290 K. The muSR data collected with a muon implantation energy of 1 keV reveal that magnetic signals originate from the near-surface region of the film (<10 nm), and the affected volume fraction is at most about 8.5%. The localized magnetic response is consistent across different substrates, growth techniques, and parameter sets, suggesting a common origin related to surface defects and dimensionality effects. The combined use of TF-muSR and the study of depth-dependent implantation with low-energy muons provides direct evidence for surface-confined, inhomogeneous static magnetic order in RuO2 thin films, helping reconcile discrepancies. These findings underscore the importance of considering reduced-dimensional contributions and motivate further investigation into the role of defects, strain, and stoichiometry on the magnetic properties of RuO2, especially at the surface.
format Preprint
id arxiv_https___arxiv_org_abs_2510_08064
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Surface-Localized Magnetic Order in RuO2 Thin Films Revealed by Low-Energy Muon Probes
Akashdeep, Akashdeep
Krishnia, Sachin
Ha, Jae-Hyun
An, Siyeon
Gaerner, Maik
Prokscha, Thomas
Suter, Andreas
Janka, Gianluca
Reiss, Günter
Kuschel, Timo
Han, Dong-Soo
Di Bernardo, Angelo
Salman, Zaher
Jakob, Gerhard
Kläui, Mathias
Mesoscale and Nanoscale Physics
Materials Science
Ruthenium dioxide (RuO2) has recently emerged as a candidate altermagnet, yet its intrinsic magnetic ground state, particularly in thin films, remains debated. This study aims to clarify the nature and spatial extent of the magnetic order in RuO2 thin films grown under different conditions. Thin films of RuO2 with thicknesses of 30 nm and 33 nm are fabricated by pulsed laser deposition and sputtering onto TiO2(110) and Al2O3(1-102) substrates, respectively. Low-energy muon spin rotation/relaxation (LE-muSR) with depth-resolved sensitivity measurements is performed in transverse magnetic fields (TF) from 4 K to 290 K. The muSR data collected with a muon implantation energy of 1 keV reveal that magnetic signals originate from the near-surface region of the film (<10 nm), and the affected volume fraction is at most about 8.5%. The localized magnetic response is consistent across different substrates, growth techniques, and parameter sets, suggesting a common origin related to surface defects and dimensionality effects. The combined use of TF-muSR and the study of depth-dependent implantation with low-energy muons provides direct evidence for surface-confined, inhomogeneous static magnetic order in RuO2 thin films, helping reconcile discrepancies. These findings underscore the importance of considering reduced-dimensional contributions and motivate further investigation into the role of defects, strain, and stoichiometry on the magnetic properties of RuO2, especially at the surface.
title Surface-Localized Magnetic Order in RuO2 Thin Films Revealed by Low-Energy Muon Probes
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2510.08064