The energy splitting of the low-lying levels has been investigated on two magnetic molecular clusters Fe-6 and Fe-10 by means of low-temperature zero-field specific-heat measurements. Significant deviations from the usual C similar to T-2 law were observed above the maximum of the main Schottky anomalies as a result of nonnegligible contributions from the excited spin states with S>1 and the estimated lattice contributions follow a phenomenological power law C/R similar to T-alpha with alpha-2.7 for both these compounds. The singlet-triplet energy gaps evaluated by the Schottky anomaly, T-0=19.2 K for Fe6 and 4.56 K for Fe-10, are smaller than what we can estimate by a simplified spin-Hamiltonian approach in the strong exchange approximatio...
The specific heats of CeB6 and LaB6 have been measured over a large range of temperatures and under ...
The field of single molecule magnetism remains predicated on super- and double exchange mechanisms t...
Ajiro Y, Inagaki Y, Itoh H, et al. Quantum level structure of molecular magnets, Fe12 and V15. In: I...
We have studied the low-temperature (T) specific heat (C) of Li : Fe6 molecular magnets. The Schottk...
The effects of the internal guest substitution within hexa-iron molecular rings (Na:Fe6 and Li:Fe6) ...
The effects of the internal guest substitution within hexa-iron molecular rings (Na:Fe6 and Li:Fe6)...
The transitions within the S=5 ground state of the tetrairon(III) molecular cluster Fe4(OCH3)6(dpm)6...
The specific heat of II-IV group Fe-based DMS has been investigated at temperatures below 20 K. All ...
We critically review recent results obtained by studying the low-temperature specific heat of some o...
The specific heat of the diluted magnetic semiconductors Hg1-x-yCdyFexSe has been measured for tempe...
Magnetic ordering in a high-spin Fe19 magnetic nanomagnetWe report evidence of antiferromagnetic (A...
Low-temperature heat capacity measurements were performed on the molecular nanomagnet $\text{K}_{6}[...
Low lying energy levels of Fe2+ ion triples in the cubic-structure iron-based diluted magnetic semic...
The present thesis provides extensive investigations on the effect of geometrical spin frustration i...
The nature of the magnetic ground state of the spin-frustrated molecular magnet {Mo72Fe30} is studie...
The specific heats of CeB6 and LaB6 have been measured over a large range of temperatures and under ...
The field of single molecule magnetism remains predicated on super- and double exchange mechanisms t...
Ajiro Y, Inagaki Y, Itoh H, et al. Quantum level structure of molecular magnets, Fe12 and V15. In: I...
We have studied the low-temperature (T) specific heat (C) of Li : Fe6 molecular magnets. The Schottk...
The effects of the internal guest substitution within hexa-iron molecular rings (Na:Fe6 and Li:Fe6) ...
The effects of the internal guest substitution within hexa-iron molecular rings (Na:Fe6 and Li:Fe6)...
The transitions within the S=5 ground state of the tetrairon(III) molecular cluster Fe4(OCH3)6(dpm)6...
The specific heat of II-IV group Fe-based DMS has been investigated at temperatures below 20 K. All ...
We critically review recent results obtained by studying the low-temperature specific heat of some o...
The specific heat of the diluted magnetic semiconductors Hg1-x-yCdyFexSe has been measured for tempe...
Magnetic ordering in a high-spin Fe19 magnetic nanomagnetWe report evidence of antiferromagnetic (A...
Low-temperature heat capacity measurements were performed on the molecular nanomagnet $\text{K}_{6}[...
Low lying energy levels of Fe2+ ion triples in the cubic-structure iron-based diluted magnetic semic...
The present thesis provides extensive investigations on the effect of geometrical spin frustration i...
The nature of the magnetic ground state of the spin-frustrated molecular magnet {Mo72Fe30} is studie...
The specific heats of CeB6 and LaB6 have been measured over a large range of temperatures and under ...
The field of single molecule magnetism remains predicated on super- and double exchange mechanisms t...
Ajiro Y, Inagaki Y, Itoh H, et al. Quantum level structure of molecular magnets, Fe12 and V15. In: I...