In this paper we present recent achievements in the field of investigation of the local, electronic and magnetic structure of the matter under extreme conditions of pressure and temperature. These results were obtained thanks to the coupling of a compact laser heating system to the energy-dispersive XAS technique available on the ID24 beamline at the ESRF synchrotron. The examples chosen concern the melting and the liquid structure of 3d metals and alloys under high pressures (HPs) and the observation of temperature-induced spin crossover in FeCO3 at HP.

Torchio, R., Boccato, S., Cerantola, V., Morard, G., Irifune, T., Kantor, I. (2016). Probing the local, electronic and magnetic structure of matter under extreme conditions of temperature and pressure. HIGH PRESSURE RESEARCH, 36(3), 293-302 [10.1080/08957959.2016.1198904].

Probing the local, electronic and magnetic structure of matter under extreme conditions of temperature and pressure

Cerantola V;
2016

Abstract

In this paper we present recent achievements in the field of investigation of the local, electronic and magnetic structure of the matter under extreme conditions of pressure and temperature. These results were obtained thanks to the coupling of a compact laser heating system to the energy-dispersive XAS technique available on the ID24 beamline at the ESRF synchrotron. The examples chosen concern the melting and the liquid structure of 3d metals and alloys under high pressures (HPs) and the observation of temperature-induced spin crossover in FeCO3 at HP.
Articolo in rivista - Articolo scientifico
ED-XAS; High temperature–high pressure; laser heating; local electronic and magnetic structure;
English
293
302
10
Torchio, R., Boccato, S., Cerantola, V., Morard, G., Irifune, T., Kantor, I. (2016). Probing the local, electronic and magnetic structure of matter under extreme conditions of temperature and pressure. HIGH PRESSURE RESEARCH, 36(3), 293-302 [10.1080/08957959.2016.1198904].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/397656
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