Spin dynamics of the two magnetic molecular clusters Fe4 and Fe8, with four and eight Fe(III) ions, respectively, was studied by means of Mossbauer spectroscopy. The transition probabilities W's between the spin states of the ground multiplet were obtained from the fitting of the spectra. For the Fe4 cluster we found that, in the range from 1.38 to 77 K, the trend of W's versus the temperature corresponds to an Orbach's process involving an excited state with energy of about 160 K. For the Fe8. which, due to the presence of a low-energy excited state, could not be studied at temperatures greater than 20 K. the trend of W's in the range from 4 to 18 K seems to correspond to a direct process, The correlation functions of the magnetization were then calculated in terms of the W's. They have an exponential trend for the Fe4 cluster, while a small oscillating component is also present for the Fe8 cluster. For the first of the clusters, tau vs T (tau is the decay time of the magnetization) has a trend which. at low temperatures (T< 15 K), corresponds to an Arrhenius law with a potential barrier of the order of the energy difference between the states \M\ = 5 and M = 0 (&AP; 7 K). Instead for T > 15 K, tau follows the trend of W-1. For the Fe8, tau follows an Arrhenius law, but with a prefactor which is smaller than the one obtained susceptibility measurements.

Spin dynamics study of magnetic molecular clusters by means of Mossbauer spectroscopy / Cianchi L.; Del Giallo F.; Spina G.; Reiff W.; Caneschi A.. - In: PHYSICAL REVIEW. B, CONDENSED MATTER AND MATERIALS PHYSICS. - ISSN 1098-0121. - STAMPA. - 65:(2002), pp. 064415-064415. [10.1103/PhysRevB.65.064415]

Spin dynamics study of magnetic molecular clusters by means of Mossbauer spectroscopy

SPINA, GABRIELE;CANESCHI, ANDREA
2002

Abstract

Spin dynamics of the two magnetic molecular clusters Fe4 and Fe8, with four and eight Fe(III) ions, respectively, was studied by means of Mossbauer spectroscopy. The transition probabilities W's between the spin states of the ground multiplet were obtained from the fitting of the spectra. For the Fe4 cluster we found that, in the range from 1.38 to 77 K, the trend of W's versus the temperature corresponds to an Orbach's process involving an excited state with energy of about 160 K. For the Fe8. which, due to the presence of a low-energy excited state, could not be studied at temperatures greater than 20 K. the trend of W's in the range from 4 to 18 K seems to correspond to a direct process, The correlation functions of the magnetization were then calculated in terms of the W's. They have an exponential trend for the Fe4 cluster, while a small oscillating component is also present for the Fe8 cluster. For the first of the clusters, tau vs T (tau is the decay time of the magnetization) has a trend which. at low temperatures (T< 15 K), corresponds to an Arrhenius law with a potential barrier of the order of the energy difference between the states \M\ = 5 and M = 0 (&AP; 7 K). Instead for T > 15 K, tau follows the trend of W-1. For the Fe8, tau follows an Arrhenius law, but with a prefactor which is smaller than the one obtained susceptibility measurements.
2002
65
064415
064415
Cianchi L.; Del Giallo F.; Spina G.; Reiff W.; Caneschi A.
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/337014
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