Spin-density wave of ferrimagnetic building blocks masking the ferromagnetic quantum-critical point in NbFe2

Fuente: arXiv
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Main Authors: Poulis, T., Mani, G., Sturt, J., Duncan, W. J., Thoma, H., Hutanu, V., Ouladdiaf, B., Kibalin, I., Lemee, M. H., Manuel, P., Neubauer, A., Pfleiderer, C., Grosche, F. M., Niklowitz, P. G.
Format: Preprint
Published: 2025
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author Poulis, T.
Mani, G.
Sturt, J.
Duncan, W. J.
Thoma, H.
Hutanu, V.
Ouladdiaf, B.
Kibalin, I.
Lemee, M. H.
Manuel, P.
Neubauer, A.
Pfleiderer, C.
Grosche, F. M.
Niklowitz, P. G.
author_facet Poulis, T.
Mani, G.
Sturt, J.
Duncan, W. J.
Thoma, H.
Hutanu, V.
Ouladdiaf, B.
Kibalin, I.
Lemee, M. H.
Manuel, P.
Neubauer, A.
Pfleiderer, C.
Grosche, F. M.
Niklowitz, P. G.
contents In the metallic magnet NbFe2, the low temperature threshold of ferromagnetism can be investigated by varying the Fe concentration within a narrow homogeneity range. NbFe2 is one of a number of compounds where modulated order is found to mask the ferromagnetic quantum critical point. However, here we report the rare case where the masking modulated magnetic order has been fully refined. Spherical neutron polarimetry and high-intensity single-crystal neutron diffraction reveal the first case of a longitudinal spin-density wave masking the ferromagnetic quantum critical point. The spin-density wave is characterised by a large-wavelength incommensurate modulation of its low average moment. It is formed from ferrimagnetic building blocks with antiparallel ferromagnetic sheets. The existence of ferromagnetic sheets and cancellation of the magnetisation only over mesoscopic length scales show local similarity between the spin-density wave and the ferromagnetic parent phase and indicate the spin-density wave's unconventional nature as emerging from underlying ferromagnetic quantum criticality.
format Preprint
id arxiv_https___arxiv_org_abs_2601_00101
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Spin-density wave of ferrimagnetic building blocks masking the ferromagnetic quantum-critical point in NbFe2
Poulis, T.
Mani, G.
Sturt, J.
Duncan, W. J.
Thoma, H.
Hutanu, V.
Ouladdiaf, B.
Kibalin, I.
Lemee, M. H.
Manuel, P.
Neubauer, A.
Pfleiderer, C.
Grosche, F. M.
Niklowitz, P. G.
Strongly Correlated Electrons
In the metallic magnet NbFe2, the low temperature threshold of ferromagnetism can be investigated by varying the Fe concentration within a narrow homogeneity range. NbFe2 is one of a number of compounds where modulated order is found to mask the ferromagnetic quantum critical point. However, here we report the rare case where the masking modulated magnetic order has been fully refined. Spherical neutron polarimetry and high-intensity single-crystal neutron diffraction reveal the first case of a longitudinal spin-density wave masking the ferromagnetic quantum critical point. The spin-density wave is characterised by a large-wavelength incommensurate modulation of its low average moment. It is formed from ferrimagnetic building blocks with antiparallel ferromagnetic sheets. The existence of ferromagnetic sheets and cancellation of the magnetisation only over mesoscopic length scales show local similarity between the spin-density wave and the ferromagnetic parent phase and indicate the spin-density wave's unconventional nature as emerging from underlying ferromagnetic quantum criticality.
title Spin-density wave of ferrimagnetic building blocks masking the ferromagnetic quantum-critical point in NbFe2
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2601.00101