M. Marsi
University of Paris-Sud
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Publication
Featured researches published by M. Marsi.
Physical Review B | 2009
V. Brouet; M. Marsi; Barbara Mansart; A. Nicolaou; A. Taleb-Ibrahimi; P. Le Fèvre; F. Bertran; F. Rullier-Albenque; A. Forget; D. Colson
We present a comprehensive angle-resolved photoemission study of the three-dimensional electronic structure of
Physical Review B | 2008
L. Baldassarre; A. Perucchi; D. Nicoletti; A. Toschi; G. Sangiovanni; K. Held; Massimo Capone; M. Ortolani; Lorenzo Malavasi; M. Marsi; P. Metcalf; P. Postorino; S. Lupi
text{Ba}{({text{Fe}}_{1ensuremath{-}x}{text{Co}}_{x})}_{2}{text{As}}_{2}
Physica Status Solidi B-basic Solid State Physics | 2013
Philipp Hansmann; A. Toschi; G. Sangiovanni; Tanusri Saha-Dasgupta; S. Lupi; M. Marsi; K. Held
. The wide range of dopings covered by this study,
Physical Review B | 2011
F. Rodolakis; J. P. Rueff; M. Sikora; I. Alliot; J. P. Itié; F. Baudelet; S. Ravy; P. Wzietek; P. Hansmann; A. Toschi; M. W. Haverkort; G. Sangiovanni; K. Held; P. Metcalf; M. Marsi
x=0
Applied Physics Letters | 2008
E. Papalazarou; Davide Boschetto; J. Gautier; T. Garl; C. Valentin; G. Rey; Philippe Zeitoun; Antoine Rousse; Philippe Balcou; M. Marsi
to
Physical Review B | 2015
I. Lo Vecchio; L. Baldassarre; Fausto D’Apuzzo; O. Limaj; D. Nicoletti; A. Perucchi; Lele Fan; P. Metcalf; M. Marsi; S. Lupi
x=0.3
Physical Review B | 2012
Barbara Mansart; E. Papalazarou; M. Fuglsang Jensen; V. Brouet; L. Petaccia; L. de' Medici; G. Sangiovanni; F. Rullier-Albenque; A. Forget; D. Colson; M. Marsi
, allows to extract systematic features of the electronic structure. We show that there are three different hole pockets around the
Applied Physics Letters | 2012
B. Mansart; A. Barinov; P. Dudin; L. Baldassarre; A. Perucchi; E. Papalazarou; P. Metcalf; S. Lupi; M. Marsi
ensuremath{Gamma}
EPL | 2010
Barbara Mansart; Davide Boschetto; S. Sauvage; Antoine Rousse; M. Marsi
point: the two inner ones being nearly degenerate and rather two dimensional, the outer one presenting a strong three-dimensional character. The structure of the electron pockets is clarified by studying high doping contents, where they are enlarged. They are found to be essentially circular and two dimensional. From the size of the pockets, we deduce the number of holes and electrons present at the various dopings. We find that the net number of carriers is in good agreement with the bulk stoichiometry but that the number of each species (holes and electrons) is smaller than predicted by theory. Finally, we discuss the quality of nesting in the different regions of the phase diagram. The presence of the third hole pocket significantly weakens the nesting at
Physical Review B | 2010
Barbara Mansart; Davide Boschetto; A. Savoia; F. Rullier-Albenque; F. Bouquet; E. Papalazarou; A. Forget; D. Colson; Antoine Rousse; M. Marsi
x=0