TY - JOUR
T1 - Sm 4f electronic state of heavy fermion compound SmOs4Sb 12 by theory of high-energy spectroscopy
AU - Nanba, Yusuke
AU - Mizumaki, Masaichiro
AU - Okada, Kozo
PY - 2013/10/1
Y1 - 2013/10/1
N2 - We calculate a set of high-energy spectra, such as the Sm 3d X-ray absorption spectrum and X-ray photoemission spectrum using a configuration-interaction full-multiplet theory to investigate the Sm 4f electronic state of SmOs4Sb12. In the study of SmOs 4Sb12 performed so far, the ground state was expressed by a linear combination of the f5 electron configuration and its charge transfer (CT) states, which indicates that the local symmetry is J = 5/2. In contrast, the present study shows that the ground state expressed by the f 6 electron configuration and its CT states can also reproduce the experiments well. We note that the f6-based ground state, the local symmetry of which is J = 0, is of great advantage for discussing the experimental result that the heavy fermion state of SmOs4Sb 12 is insensitive to the applied magnetic field. We predict that the f6-based ground state will be justified by the Sm 3d X-ray magnetic circular dichroism.
AB - We calculate a set of high-energy spectra, such as the Sm 3d X-ray absorption spectrum and X-ray photoemission spectrum using a configuration-interaction full-multiplet theory to investigate the Sm 4f electronic state of SmOs4Sb12. In the study of SmOs 4Sb12 performed so far, the ground state was expressed by a linear combination of the f5 electron configuration and its charge transfer (CT) states, which indicates that the local symmetry is J = 5/2. In contrast, the present study shows that the ground state expressed by the f 6 electron configuration and its CT states can also reproduce the experiments well. We note that the f6-based ground state, the local symmetry of which is J = 0, is of great advantage for discussing the experimental result that the heavy fermion state of SmOs4Sb 12 is insensitive to the applied magnetic field. We predict that the f6-based ground state will be justified by the Sm 3d X-ray magnetic circular dichroism.
KW - Mixed valence state
KW - Nonmagnetic state
KW - SmOsSb
KW - X-ray absorption spectroscopy
KW - X-ray photoemission spectroscopy
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U2 - 10.7566/JPSJ.82.104712
DO - 10.7566/JPSJ.82.104712
M3 - Article
AN - SCOPUS:84885017430
SN - 0031-9015
VL - 82
JO - Journal of the Physical Society of Japan
JF - Journal of the Physical Society of Japan
IS - 10
M1 - 104712
ER -