149Sm synchrotron-radiation-based Mössbauer spectroscopy of Sm-based heavy fermion compounds

149 Sm synchrotron-radiation-based Mössbauer spectroscopy has been applied to Sm-based heavy fermion intermetallics, Sm Tr 2 Al 20 ( Tr  = Ti, V and Cr) and SmOs 4 Sb 12 . The isomer shifts obtained demonstrate that the Sm valence states in these compounds are intermediate. Since the difference of t...

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Veröffentlicht in:Hyperfine interactions 2024-01, Vol.245 (1), Article 9
Hauptverfasser: Tsutsui, Satoshi, Higashinaka, Ryuji, Mizumaki, Masaichiro, Kobayashi, Yoshio, Nakamura, Jin, Ito, Takashi U., Yoda, Yoshitaka, Matsuda, Tatsuma D., Aoki, Yuji, Sato, Hideyuki
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Sprache:eng
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Zusammenfassung:149 Sm synchrotron-radiation-based Mössbauer spectroscopy has been applied to Sm-based heavy fermion intermetallics, Sm Tr 2 Al 20 ( Tr  = Ti, V and Cr) and SmOs 4 Sb 12 . The isomer shifts obtained demonstrate that the Sm valence states in these compounds are intermediate. Since the difference of the isomer shifts in 22.502 keV 149 Sm Mössbauer effect between Sm 2+ and Sm 3+ state is comparable to the 2nd order Doppler shift, consideration of the 2nd order Doppler shift is required to precisely discuss Sm valence state through the shifts of the Mössbauer spectra. In addition, the plots of the isomer shifts obtained by the Mössbauer spectroscopy against the Sm valence states estimated from Sm L -edge X-ray absorption spectroscopy exhibit a linear correlation except for that in SmOs 4 Sb 12 . This implies that the origin of the intermediate valence state in SmOs 4 Sb 12 differs from that in Sm Tr 2 Al 20 ( Tr  = Ti, V and Cr).
ISSN:3005-0731
0304-3843
3005-0731
1572-9540
DOI:10.1007/s10751-024-01851-y