Magnetic studies of monoclinic Cu4O(SeO3)3, a copper-oxo-selenite derivative

Cu4O(SeO3)3 is a copper-oxo-selenite belonging to the CuxO(SeO3)(x–1) family of the topological chiral magnet Cu2OSeO3. We report magnetometry and specific heat data measured in a monoclinic Cu4O(SeO3)3 single crystal grown through a Chemical Vapour Transport (CVT) reaction. Our study shows a typica...

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Main Authors: Malta José F., Henriques Marta S.C., Paixão José A., Gonçalves António P.
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2020/09/epjconf_cmpnc2019_01002.pdf
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spelling doaj-f501afd0f9fc4b29a4fccd6189d70b4f2021-08-02T06:38:36ZengEDP SciencesEPJ Web of Conferences2100-014X2020-01-012330100210.1051/epjconf/202023301002epjconf_cmpnc2019_01002Magnetic studies of monoclinic Cu4O(SeO3)3, a copper-oxo-selenite derivativeMalta José F.Henriques Marta S.C.0Paixão José A.1Gonçalves António P.2CFisUC, Department of Physics, University of Coimbra, Rua LargaCFisUC, Department of Physics, University of Coimbra, Rua LargaC²TN, DECN, Instituto Superior Técnico, University of LisbonCu4O(SeO3)3 is a copper-oxo-selenite belonging to the CuxO(SeO3)(x–1) family of the topological chiral magnet Cu2OSeO3. We report magnetometry and specific heat data measured in a monoclinic Cu4O(SeO3)3 single crystal grown through a Chemical Vapour Transport (CVT) reaction. Our study shows a typical antiferromagnetic behaviour, with a Néel temperature TN = 58 K, similar to that of the Cu2OSeO3 and an additional transition at 13 K. The effective magnetic moment per Cu atom is 1.84 μB, close to the expected theoretical value for Cu2+. The low-temperature M(H) curves, show a transition starting at Hc1 ~ 400 Oe at 1.8 K shifting to a lower value of ~ 280 Oe at 30 K, likely from a helical into a conical intermediate phase, and a second transition at Hc2 ~ 1 kOe, above which the net moment increases linearly with applied field. The magnetisation moment value in a 90 kOe field is 0.053 μB/Cu at 1.8 K and attains a maximum value of 0.061 μB at 13 K. Low-temperature specific heat measurements confirm the presence of the magnetic transition at 13 K, slightly shifting to lower temperatures under an applied magnetic field.https://www.epj-conferences.org/articles/epjconf/pdf/2020/09/epjconf_cmpnc2019_01002.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Malta José F.
Henriques Marta S.C.
Paixão José A.
Gonçalves António P.
spellingShingle Malta José F.
Henriques Marta S.C.
Paixão José A.
Gonçalves António P.
Magnetic studies of monoclinic Cu4O(SeO3)3, a copper-oxo-selenite derivative
EPJ Web of Conferences
author_facet Malta José F.
Henriques Marta S.C.
Paixão José A.
Gonçalves António P.
author_sort Malta José F.
title Magnetic studies of monoclinic Cu4O(SeO3)3, a copper-oxo-selenite derivative
title_short Magnetic studies of monoclinic Cu4O(SeO3)3, a copper-oxo-selenite derivative
title_full Magnetic studies of monoclinic Cu4O(SeO3)3, a copper-oxo-selenite derivative
title_fullStr Magnetic studies of monoclinic Cu4O(SeO3)3, a copper-oxo-selenite derivative
title_full_unstemmed Magnetic studies of monoclinic Cu4O(SeO3)3, a copper-oxo-selenite derivative
title_sort magnetic studies of monoclinic cu4o(seo3)3, a copper-oxo-selenite derivative
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2020-01-01
description Cu4O(SeO3)3 is a copper-oxo-selenite belonging to the CuxO(SeO3)(x–1) family of the topological chiral magnet Cu2OSeO3. We report magnetometry and specific heat data measured in a monoclinic Cu4O(SeO3)3 single crystal grown through a Chemical Vapour Transport (CVT) reaction. Our study shows a typical antiferromagnetic behaviour, with a Néel temperature TN = 58 K, similar to that of the Cu2OSeO3 and an additional transition at 13 K. The effective magnetic moment per Cu atom is 1.84 μB, close to the expected theoretical value for Cu2+. The low-temperature M(H) curves, show a transition starting at Hc1 ~ 400 Oe at 1.8 K shifting to a lower value of ~ 280 Oe at 30 K, likely from a helical into a conical intermediate phase, and a second transition at Hc2 ~ 1 kOe, above which the net moment increases linearly with applied field. The magnetisation moment value in a 90 kOe field is 0.053 μB/Cu at 1.8 K and attains a maximum value of 0.061 μB at 13 K. Low-temperature specific heat measurements confirm the presence of the magnetic transition at 13 K, slightly shifting to lower temperatures under an applied magnetic field.
url https://www.epj-conferences.org/articles/epjconf/pdf/2020/09/epjconf_cmpnc2019_01002.pdf
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