Data Underpinning: Disordered ground state in the 3D face-centred frustrated spin-5/2 system MnSn(OH)₆

Documentation of the data
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Each experimental technique has its own subdirectory, and each subdirectory has a notes.txt file describing the files therein. In several cases the data are sorted in subdirectories, e.g. by magnetic field direction.

Description of the data
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Data underpinning "Disordered ground state in the 3D face-centred frustrated spin-5/2 system MnSn(OH)₆". Contains or describes data from: -specific heat -magnetization -AC susceptometry -SEM/EDX -Fourier-transform infrared spectroscopy -neutron powder diffraction -x-ray diffraction

Type of the data
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Dataset

Total size of the dataset
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6750815

Author
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Parui, Kaushick K.

Author
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Kulbakov, Anton A.

Author
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Häußler, Ellen

Author
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Pavlovskii, Nikolai S.

Author
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Mannathanath Chakkingal, Aswathi

Author
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Avdeev, Maxim

Author
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Gumeniuk, Roman

Author
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Granovsky, Sergey

Author
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Mistonov, Alexander

Author
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Zvyagin, Sergei

Author
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Doert, Thomas

Author
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Inosov, Dmytro S.

Author
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Peets, Darren C.

Upload date
dc.date.accessioned

2025-03-04T15:48:53Z

Publication date
dc.date.available

2025-03-04T15:48:53Z

Data of data creation
dc.date.created

2024

Publication date
dc.date.issued

2025-03-04

Abstract of the dataset
dc.description.abstract

This contains the data underpinning our paper on MnSn(OH)₆. The abstract of the article is reproduced below: Frustrated magnetism in face-centered cubic (fcc) magnetic sublattices remains underexplored but holds considerable potential for exotic magnetic behavior. Here, we report on the crystal structural, magnetic and thermodynamic properties of the A-site-vacant double hydroxide perovskite MnSn(OH)₆. Despite dominant antiferromagnetic interactions among Mn²⁺ moments, evidenced by a negative Curie-Weiss temperature, the lack of a sharp thermodynamic transition down to 350 mK implies the absence of long-range magnetic order. However, a broad hump at 1.6 K suggests short-range correlations and spin freezing, with power-law behavior consistent with a spin-glass state. Neutron diffraction at low temperatures confirms the presence of three-dimensional (3D) antiferromagnetic correlations, manifesting as diffuse magnetic scattering with a correlation length ξ = 24.66 Å and a magnetic propagation vector k = (0 0 ½) at 20 mK.

Public reference to this page
dc.identifier.uri

https://opara.zih.tu-dresden.de/handle/123456789/1114

Public reference to this page
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https://doi.org/10.25532/OPARA-685

Publisher
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Technische Universität Dresden

Licence
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Attribution 4.0 Internationalen

URI of the licence text
dc.rights.uri

http://creativecommons.org/licenses/by/4.0/

Specification of the discipline(s)
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3::32::307::307-01

Specification of the discipline(s)
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3::31::322::322-01

Title of the dataset
dc.title

Data Underpinning: Disordered ground state in the 3D face-centred frustrated spin-5/2 system MnSn(OH)₆

Underlying research object
opara.descriptionObject.Substance

MnSn(OH)₆

Underlying research object
opara.descriptionObject.Substance

MnSn(OD)₆

Public project website(s)
opara.project.publicReference

https://www.ctqmat.de

Public project website(s)
opara.project.publicReference

https://fis.tu-dresden.de/portal/en/organisations/clusters-of-excellence-ctqmat-complexity-and-topology-in-quantum-matter(7bac147f-30fb-409f-ada3-5381707258b2).html

Public project website(s)
opara.project.publicReference

https://tu-dresden.de/mn/physik/sfb1143

Project title
opara.project.title

Cluster of Excellence 2147, ct.qmat–Complexity and Topology in Quantum Matter; Correlated Magnetism: From Frustration to Topology (SFB 1143); Frustrated Magnetism in Copper Minerals (PE 3318/2-1, PE 3318/2-2); Correlated Proton Disorder and Frustrated Magnetism in Hydroxide Perovskites (IN 209/12-1, DO 590/11-1)
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