Mn4-xGaxN Thin Films for Ferrimagnetic Spintronics

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2023Access:
openAccessCitation:
Prendeville, L. and He, Y. and Cavero, P.J. and Lenne, S. and Coey, J.M.D. and Rode, K., Mn4-xGaxN Thin Films for Ferrimagnetic Spintronics, 2023Download Item:
Abstract:
Ferrimagnetic compensation in Mn4−xGaxN (0<x<0.27) thin films grown by sputtering on (001) MgO is determined from
magnetisation and Anomalous Hall effect measurements and compared with results on the bulk material. Compensation appears in
films with x >0.15 and it occurs at 235 K when x = 0.18. A greater amount of Ga-doping is required to achieve compensation in
the bulk, where room-temperature compensation is at x = 0.26. The differences are discussed in terms of Ga site occupancy in
the Mn4N structure, and an effect of the change of easy axis of the triangular ferrimagnetic spin structure from [111] in the bulk
to [001] in the tetragonally-distorted films.
Sponsor
Grant Number
Science Foundation Ireland (SFI)
SFI-NSF China (17/NSFC/5294)
Irish Research Council (IRC)
GOIPG/2019/4430
Science Foundation Ireland (SFI)
FISTMAP (21/FFP-P/10175)
Author's Homepage:
http://people.tcd.ie/venkatemhttp://people.tcd.ie/rodek
http://people.tcd.ie/jcoey
Author: Coey, John; Rode, Karsten
Sponsor:
Science Foundation Ireland (SFI)Irish Research Council (IRC)
Science Foundation Ireland (SFI)
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Conference PaperCollections
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2023 IEEE International Magnetic Conference - Short Papers, INTERMAG Short Papers 2023 - Proceedings;Availability:
Full text availableSubject:
Anomalous Hall effect, Compensated Ferrimagnet, Mn4−xGaxN thin films, Non-collinear spin structureSubject (TCD):
Nanoscience & Materials , Applied physics , Condensed matter, electronic, magnetic and superconductive properties , Magnetism and spin electronics , Nanotechnology , NanotechnologyDOI:
http://dx.doi.org/10.1109/INTERMAGShortPapers58606.2023.10228222Source URI:
https://doi.org/10.1109/INTERMAGShortPapers58606.2023.10228222Metadata
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