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Autori principali: De Vita, A., Sant, R., Polewczyk, V., van der Laan, G., Brookes, N. B., Kong, T., Cava, R. J., Rossi, G., Vinai, G., Panaccione, G.
Natura: Preprint
Pubblicazione: 2024
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Accesso online:https://arxiv.org/abs/2402.04063
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author De Vita, A.
Sant, R.
Polewczyk, V.
van der Laan, G.
Brookes, N. B.
Kong, T.
Cava, R. J.
Rossi, G.
Vinai, G.
Panaccione, G.
author_facet De Vita, A.
Sant, R.
Polewczyk, V.
van der Laan, G.
Brookes, N. B.
Kong, T.
Cava, R. J.
Rossi, G.
Vinai, G.
Panaccione, G.
contents Van der Waals materials provide a versatile toolbox for the emergence of new quantum phenomena and the fabrication of functional heterostructures. Among them, the trihalide VI3 stands out for its unique magnetic and structural landscape. Here we investigate the spin and orbital magnetic degrees of freedom in the layered ferromagnet VI3 by means of temperature-dependent x-ray absorption spectroscopy and x-ray magnetic circular and linear dichroism. We detect localized electronic states and reduced magnetic dimensionality, due to electronic correlations. We furthermore provide experimental evidence of (a) an unquenched orbital magnetic moment (up to 0.66(7)) in the ferromagnetic state, and (b) an instability of the orbital moment in proximity of the spin reorientation transition. Our results support a coherent picture where electronic correlations give rise to a strong magnetic anisotropy and a large orbital moment, and establish VI3 as a prime candidate for the study of orbital quantum effects.
format Preprint
id arxiv_https___arxiv_org_abs_2402_04063
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Evidence of temperature-dependent interplay between spin and orbital moment in van der Waals ferromagnet VI3
De Vita, A.
Sant, R.
Polewczyk, V.
van der Laan, G.
Brookes, N. B.
Kong, T.
Cava, R. J.
Rossi, G.
Vinai, G.
Panaccione, G.
Materials Science
Van der Waals materials provide a versatile toolbox for the emergence of new quantum phenomena and the fabrication of functional heterostructures. Among them, the trihalide VI3 stands out for its unique magnetic and structural landscape. Here we investigate the spin and orbital magnetic degrees of freedom in the layered ferromagnet VI3 by means of temperature-dependent x-ray absorption spectroscopy and x-ray magnetic circular and linear dichroism. We detect localized electronic states and reduced magnetic dimensionality, due to electronic correlations. We furthermore provide experimental evidence of (a) an unquenched orbital magnetic moment (up to 0.66(7)) in the ferromagnetic state, and (b) an instability of the orbital moment in proximity of the spin reorientation transition. Our results support a coherent picture where electronic correlations give rise to a strong magnetic anisotropy and a large orbital moment, and establish VI3 as a prime candidate for the study of orbital quantum effects.
title Evidence of temperature-dependent interplay between spin and orbital moment in van der Waals ferromagnet VI3
topic Materials Science
url https://arxiv.org/abs/2402.04063