Elastic and anelastic relaxation behaviour of perovskite multiferroics II: PbZr0.53Ti0.47O3 (PZT)–PbFe0.5Ta0.5O3 (PFT)
Jason Schiemer(Australian National University), Michael A. Carpenter(Howard Hughes Medical Institute), Siân E. Dutton(University of Cambridge), H. Shinohara(University of Cambridge), J. F. Scott(King's College London), B. Nair(University of Cambridge), Ram S. Katiyar(University of Puerto Rico System), R. Nagaratnam(University of Cambridge), A. J. F. Heap(University of Cambridge), C. Salazar Mejía(Helmholtz-Zentrum Dresden-Rossendorf), Walter Schnelle(Max Planck Institute for Chemical Physics of Solids), Ioan Lascu(University of Cambridge), Ashok Kumar(Rajasthan University of Veterinary and Animal Sciences), Dilsom A. Sanchez(University of Puerto Rico System), N. D. Mathur(University of Cambridge), N. Ortega(University of Puerto Rico System), R. J. Harrison(University of Cambridge)
Cited by 12
Related Papers
Conduction at domain walls in oxide multiferroics
|Nature Materials|2009|1.4k
A ferroelectric memristor
|Nature Materials|2012|1.2k
Electron-pinned defect-dipoles for high-performance colossal permittivity materials
|Nature Materials|2013|1.1k
Solid-state memories based on ferroelectric tunnel junctions
|Nature Nanotechnology|2011|611
Exploring the Magnetoelectric Coupling at the Composite Interfaces of FE/FM/FE Heterostructures
|Scientific Reports|2018|366