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Chasing the magnetic and structural precursors of the ultrafast insulator-to-metal transition in the prototypical Mott insulator V2O3

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ESRF Portal2027-01-01 更新2026-04-23 收录
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https://doi.esrf.fr/10.15151/ESRF-ES-1751552864
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We have recently shown [T. Amano et al., Propagating insulator-to-metal transition in the wake of photoinduced strain waves in a Mott material, under review in Nature Physics (2023)] that the ultrafast photoinduced insulator-to-metal transition (IMT) occurs in the prototypical Mott insulator V2O3 via a previously neglected mechanism involving the rapid creation of mechanical stress, followed by its relaxation through the coherent propagation of a strain wave. Yet, the link between the observed photoinduced structural / electronic transformations and the magnetic degrees of freedom remains unknown. Uncovering these connections is relevant to look for new pathways to instil functionality and to draw a still lacking general physical picture of ultrafast IMT’s in quantum materials. In this proposal we aim to cover this gap by investigating the simultaneous development of magnetic and structural x-ray diffraction peaks, so as to fix their causal relation.
提供机构:
UMR CNRS UR1 6251 - Universite Rennes 1,Institut de Physique de Rennes - IPR,Campus de Beaulieu,35042 RENNES Cedex,FRANCE,35042 ,RENNES,FRANCE; CNRS,IMN/ST2E,2 rue de la Houssinière,B.P. 32229,44322 NANTES 3,44322,NANTES,FRANCE; CNRS UMR 6502 - Universite de Nantes,Laboratoire de Chimie des Solides,Institut des Matériaux Jean Rouxel,2 rue de la Houssinière BP 32229,44322 NANTES Cedex,44322,NANTES,FRANCE; Universite de Tours,GREMAN,Parc de Grandmont,TOURS,37000 TOURS,37000,TOURS,FRANCE; Institut des Materiaux de Nantes,44072 NANTES Cedex 03,FRANCE,44072 ,NANTES,FRANCE; Institut des materiaux Jean Rouxel Nantes,44322 NANTES,FRANCE,44322,NANTES,FRANCE; ESRF,CS 40220,38043 GRENOBLE Cedex 9,FRANCE,38043,GRENOBLE,FRANCE
创建时间:
2027-01-01
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