Low temperature properties of the electron spin resonance in YbRh 2 Si 2

We present the field and temperature behavior of the narrow electron spin resonance (ESR) response in YbRh 2 Si 2 well below the single ion Kondo temperature. The ESR g ‐factor reflects a Kondo‐like field and temperature evolution of the Yb 3+ magnetism. Measurements toward low temperatures (> 0....

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Veröffentlicht in:physica status solidi (b) 2010-03, Vol.247 (3), p.747-750
Hauptverfasser: Sichelschmidt, J., Kambe, T., Fazlishanov, I., Zakharov, D., Krug von Nidda, H.‐A., Wykhoff, J., Skvortsova, A., Belov, S., Kutuzov, A., Kochelaev, B.I., Pashchenko, V., Lang, M., Krellner, C., Geibel, C., Steglich, F.
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container_end_page 750
container_issue 3
container_start_page 747
container_title physica status solidi (b)
container_volume 247
creator Sichelschmidt, J.
Kambe, T.
Fazlishanov, I.
Zakharov, D.
Krug von Nidda, H.‐A.
Wykhoff, J.
Skvortsova, A.
Belov, S.
Kutuzov, A.
Kochelaev, B.I.
Pashchenko, V.
Lang, M.
Krellner, C.
Geibel, C.
Steglich, F.
description We present the field and temperature behavior of the narrow electron spin resonance (ESR) response in YbRh 2 Si 2 well below the single ion Kondo temperature. The ESR g ‐factor reflects a Kondo‐like field and temperature evolution of the Yb 3+ magnetism. Measurements toward low temperatures (> 0.5 K) have shown distinct crossover anomalies of the ESR parameters upon approaching the regime of a well‐defined heavy Fermi liquid. Comparison with the field dependence of specific heat and electrical resistivity reveal that the ESR parameters can be related to quasiparticle mass and cross section and, hence, contain inherent heavy electron properties.
doi_str_mv 10.1002/pssb.200983058
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title Low temperature properties of the electron spin resonance in YbRh 2 Si 2
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