Article (Scientific journals)
Phase diagram of BiFeO3/LaFeO3 superlattices studied by x-ray diffraction experiments and first-principles calculations
Rispens, Gijsbert; Ziegler, Benedikt; Zanolli, Zeila et al.
2014In Physical Review. B, Condensed Matter and Materials Physics, 90, p. 104106
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Keywords :
ferroelectrics; first-principles calculations; superlattices
Abstract :
[en] Combining structural and functional measurements, we have mapped the phase diagram of BiFeO3/LaFeO3 superlattices grown by off-axis sputtering on (110)o DyScO3 substrates. The phase diagram displays three distinct regions as a function of BiFeO3 fraction, with a BiFeO3-like ferroelectric phase and a LaFeO3-like paraelectric phase at its extremities, and a complex intermediate region, as supported by first-principles calculations. This intermediate region shows unusual, mixed functional behavior, most likely due to competing phases driven by substitution with a same-size central ion and the specific boundary conditions imposed by the superlattice structure. In the BiFeO3 rich superlattices, scaling of the ferroelectric-to-paraelectric transition temperature with the BiFeO3 thickness could provide an alternate route for studying ferroelectric size effects in BiFeO3.
Research center :
Theoretical Materials Physics (PhyTheMa)
Disciplines :
Physics
Author, co-author :
Rispens, Gijsbert;  Université de Genève - UNIGE > DPMC-MaNEP
Ziegler, Benedikt;  Université de Genève - UNIGE > DPMC-MaNEP
Zanolli, Zeila ;  Université de Liège - ULiège > Département de physique > Physique théorique des matériaux
Iniguez, Jorge;  Institut de Ciencia de Materials de Barcelona
Ghosez, Philippe  ;  Université de Liège - ULiège > Département de physique > Physique théorique des matériaux
Paruch, Patrycja;  Université de Genève - UNIGE > DPMC-MaNEP
Language :
English
Title :
Phase diagram of BiFeO3/LaFeO3 superlattices studied by x-ray diffraction experiments and first-principles calculations
Publication date :
2014
Journal title :
Physical Review. B, Condensed Matter and Materials Physics
ISSN :
1098-0121
eISSN :
1550-235X
Publisher :
American Physical Society, Woodbury, United States - New York
Volume :
90
Pages :
104106
Peer reviewed :
Peer Reviewed verified by ORBi
Tags :
Tier-1 supercomputer
CÉCI : Consortium des Équipements de Calcul Intensif
Available on ORBi :
since 09 October 2014

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