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Correlation between crystal and magnetic structure of the polycrystalline and nanoparticle TbMnO3 manganite

Publication date: 14.12.2016

Technical Transactions, 2016, Fundamental Sciences Issue 1-NP 2016, pp. 5 - 15

https://doi.org/10.4467/2353737XCT.16.133.5712

Authors

,
Wiesława Bażela
Institute of Physics, Cracow University of Technology
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,
Marcin Dul
Institute of Physics, Cracow University of Technology
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,
Andrzej Szytuła
M. Smoluchowski Institute of Physics, Jagiellonian University
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Volodymyr Dyakonov
Institute of Physics, PAS, Warsaw
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Titles

Correlation between crystal and magnetic structure of the polycrystalline and nanoparticle TbMnO3 manganite

Abstract

On the basis of neutron diffraction data the Mn−O bond lengths and Mn−O−Mn bond angles for the poly- and nanocrystalline TbMnO3 samples are determined. All the samples crystallize in the orthorhombically distorted perovskite structure (space group Pnma) and exhibit antiferromagnetic ordering below 41 K. The Tb atoms and O1 atoms are in (4)c site, Mn atoms − in 4(b) site and O2 atoms − in 8(d) site. The Mn−O2−Mn bond angles for the polycrystalline and nanosize samples are similar, whereas the Mn−O1−Mn bond angles for the nanoparticle samples are larger. The temperature dependencies of the Mn−O bond lengths and the Mn−O−Mn bond angles, the Jahn-Teller distortion parameter (JT) and MnO6 − octahedron distortion parameter (delta) for polycrystalline sample exhibit anomalies at TN temperature for Mn sublattice.

References


Information

Information: Technical Transactions, 2016, Fundamental Sciences Issue 1-NP 2016, pp. 5 - 15

Article type: Original article

Titles:

Polish:

Correlation between crystal and magnetic structure of the polycrystalline and nanoparticle TbMnO3 manganite

English:

Correlation between crystal and magnetic structure of the polycrystalline and nanoparticle TbMnO3 manganite

Authors

Institute of Physics, Cracow University of Technology

Institute of Physics, Cracow University of Technology

M. Smoluchowski Institute of Physics, Jagiellonian University

Institute of Physics, PAS, Warsaw

Published at: 14.12.2016

Article status: Open

Licence: None

Percentage share of authors:

Wiesława Bażela (Author) - 25%
Marcin Dul (Author) - 25%
Andrzej Szytuła (Author) - 25%
Volodymyr Dyakonov (Author) - 25%

Article corrections:

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Publication languages:

English