M. Putti
National Research Council
57 Papers
651 Citations
M. Putti is an academic researcher from National Research Council. The author has contributed to research in topics: Superconductivity & Electrical resistivity and conductivity. The author has an hindex of 23, co-authored 57 publications.
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Papers
Tc=21 K in epitaxial FeSe0.5Te0.5 thin films with biaxial compressive strain
Emilio Bellingeri,I. Pallecchi,R. Buzio,A. Gerbi,D. Marré,M. R. Cimberle,M. Tropeano,M. Putti,A. Palenzona,Carlo Ferdeghini +9 more
TL;DR: In this paper, an epitaxial FeSe0.5Te 0.5 thin films with different thickness were grown by pulsed laser ablation deposition on different substrates.
233
Neutron Irradiation of Mg11B2 : From the Enhancement to the Suppression of Superconducting Properties
M. Putti,Valeria Braccini,Carlo Ferdeghini,F. Gatti,Pietro Manfrinetti,Daniele Marré,A. Palenzona,Ilaria Pallecchi,Chiara Tarantini,Ilya Sheikin,H. U. Aebersold,Eberhard Lehmann +11 more
TL;DR: In this article, the effect of neutron irradiation up to fluences of 3.9 1019 n/cm2 on the superconducting properties of MgB2 was investigated.
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Two-band effects in the transport properties of MgB2
M. Putti,Valeria Braccini,E. Galleani,F. Napoli,I. Pallecchi,Antonio Sergio Siri,Pietro Manfrinetti,A. Palenzona +7 more
TL;DR: In this paper, resistivity and thermal conductivity measurements on bulk samples, prepared either by a standard method or by a one-step technique, were presented, and the thermal and electrical data of all the samples were analyzed in the framework of the Bloch-Gruneisen equation, giving reliable parameter values.
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A new approach for improving global critical current density in Fe(Se0.5Te0.5) polycrystalline materials
A. Palenzona,Alberto Sala,Cristina Bernini,V. Braccini,M. R. Cimberle,C. Ferdeghini,G. Lamura,Alberto Martinelli,Ilaria Pallecchi,G Romano,Matteo Tropeano,Rosalba Fittipaldi,Antonio Vecchione,Anatolii Polyanskii,Fumitake Kametani,M. Putti +15 more
TL;DR: In this article, a novel method to prepare bulk Fe(Se0.5Te 0.5) samples is presented, based on a melting process and a subsequent annealing treatment.
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Study of the MgB2 grain size role in ex-situ multifilamentary wires with thin filaments
Andrea Malagoli,Valeria Braccini,C. Bernini,G Romano,Maurizio Vignolo,Carlo Ferdeghini,M. Putti +6 more
TL;DR: In this article, the relationship between grain and filament size in terms of transport properties is studied and the optimization of this ratio is possible in order to obtain suitable conductors for AC industrial applications.
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