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Disentanglement of magnetic contributions in multi‐component systems by using X‐ray magnetic circular dichroism at a single absorption edge
Author(s) -
Chaboy Jesús,
LagunaMarco María Ángeles,
Piquer Cristina,
Boada Roberto,
Maruyama Hiroshi,
Kawamura Naomi
Publication year - 2008
Publication title -
journal of synchrotron radiation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.172
H-Index - 99
ISSN - 1600-5775
DOI - 10.1107/s0909049508017652
Subject(s) - magnetic circular dichroism , magnetism , x ray magnetic circular dichroism , magnetometer , delocalized electron , absorption edge , condensed matter physics , magnetic moment , materials science , chemistry , spectral line , physics , magnetic field , band gap , quantum mechanics
X‐ray magnetic circular dichroism (XMCD) has become in recent years an outstanding tool for studying magnetism. Its element specificity, inherent to core‐level spectroscopy, combined with the application of magneto‐optical sum rules allows quantitative magnetic measurements at the atomic level. These capabilities are now incorporated as a standard tool for studying the localized magnetism in many systems. However, the application of XMCD to the study of the conduction‐band magnetism is not so straightforward. Here, it is shown that the atomic selectivity is not lost when XMCD probes the delocalized states. On the contrary, it provides a direct way of disentangling the magnetic contributions to the conduction band coming from the different elements in the material. This is demonstrated by monitoring the temperature dependence of the XMCD spectra recorded at the rare‐earth L 2 ‐edge in the case of RT 2 (R = rare‐earth, T = 3 d transition metal) materials. These results open the possibility of performing element‐specific magnetometry by using a single X‐ray absorption edge.

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