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New insight into tuning magnetic phases of RMn6Sn6 kagome metals.

Authors :
Riberolles, S. X. M.
Han, Tianxiong
Slade, Tyler J.
Wilde, J. M.
Sapkota, A.
Tian, Wei
Zhang, Qiang
Abernathy, D. L.
Sanjeewa, L. D.
Bud'ko, S. L.
Canfield, P. C.
McQueeney, R. J.
Ueland, B. G.
Source :
NPJ Quantum Materials; 5/20/2024, Vol. 9 Issue 1, p1-9, 9p
Publication Year :
2024

Abstract

Predicting magnetic ordering in kagome compounds offers the possibility of harnessing topological or flat-band physical properties through tuning of the magnetism. Here, we examine the magnetic interactions and phases of ErMn<subscript>6</subscript>Sn<subscript>6</subscript> which belongs to a family of RMn<subscript>6</subscript>Sn<subscript>6</subscript>, R = Sc, Y, Gd–Lu, compounds with magnetic kagome Mn layers, triangular R layers, and signatures of topological properties. Using results from single-crystal neutron diffraction and mean-field analysis, we find that ErMn<subscript>6</subscript>Sn<subscript>6</subscript> sits close to the critical boundary separating the spiral-magnetic and ferrimagnetic ordered states typical for non-magnetic versus magnetic R layers, respectively. Finding interlayer magnetic interactions and easy-plane Mn magnetic anisotropy consistent with other members of the family, we predict the existence of a number of temperature and field dependent collinear, noncollinear, and noncoplanar magnetic phases. We show that thermal fluctuations of the Er magnetic moment, which act to weaken the Mn-Er interlayer magnetic interaction and quench the Er magnetic anisotropy, dictate magnetic phase stability. Our results provide a starting point and outline a multitude of possibilities for studying the behavior of Dirac fermions in RMn<subscript>6</subscript>Sn<subscript>6</subscript> compounds with control of the Mn spin orientation and real-space spin chirality. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
23974648
Volume :
9
Issue :
1
Database :
Complementary Index
Journal :
NPJ Quantum Materials
Publication Type :
Academic Journal
Accession number :
177371416
Full Text :
https://doi.org/10.1038/s41535-024-00656-0