Slow spin relaxation induced by magnetic field in [NdCo(bpdo)(H2O)4(CN)6]⋅3H2O

We report on a comprehensive investigation of the magnetic properties of [NdCo(bpdo)(H2O)4(CN)6]⋅3H2O (bpdo=4, 4′-bipyridine-N,N′-dioxide) by use of electron paramagnetic resonance, magnetization, specific heat and susceptibility measurements. The studied material was identified as a magnet with an...

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Veröffentlicht in:Journal of physics. Condensed matter 2013-05, Vol.25 (18), p.186003-186003
Hauptverfasser: Vrábel, P, Orendá, M, Orendá ová, A, i már, E, Tarasenko, R, Zvyagin, S, Wosnitza, J, Prokleška, J, Sechovský, V, Pavlík, V, Gao, S
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Sprache:eng
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Zusammenfassung:We report on a comprehensive investigation of the magnetic properties of [NdCo(bpdo)(H2O)4(CN)6]⋅3H2O (bpdo=4, 4′-bipyridine-N,N′-dioxide) by use of electron paramagnetic resonance, magnetization, specific heat and susceptibility measurements. The studied material was identified as a magnet with an effective spin S = 1 2 and a weak exchange interaction J kB = 25 mK. The ac susceptibility studies conducted at audio frequencies and at temperatures from 1.8 to 9 K revealed that the application of a static magnetic field induces a slow spin relaxation. It is suggested that the relaxation in the magnetic field appears due to an Orbach-like process between the two lowest doublet energy states of the magnetic Nd3+ ion. The appearance of the slow relaxation in a magnetic field cannot be associated with a resonant phonon trapping. The obtained results suggest that the relaxation is influenced by nuclear spin driven quantum tunnelling which is suppressed by external magnetic field.
ISSN:0953-8984
1361-648X
DOI:10.1088/0953-8984/25/18/186003