Diffuse Scattering from PbZr$_{1-x}$Ti$_{x}$O$_{3}$
ORAL
Abstract
Alloying the ferroelectric PbTiO$_{3}$ with the anti-ferroelectric PbZrO$_{3}$ produces PbZr$_{1-\textit{x}}$Ti$_{\textit{x}}O_{3}$, a system featuring a morphotropic phase boundary around \textit{x}=0.48. Near this phase boundary, the piezoelectric properties of the system are greatly enhanced. It is thought that this behavior may be related to the addition of some short-range order phenomena arising from competition between the differing long-range orders of the parent systems. To investigate possible short-range ordering, diffuse scattering measurements were performed on a single crystal of PbZr$_{0.54}$Ti$_{0.46}$O$_{3}$ producing large volumes of reciprocal space intensities from both neutron and x-ray diffraction. Our experiments evidence significant short-range correlations that provide an interesting contrast to related relaxor and ferroelectric systems.
–
Authors
-
Matthew Krogstad
Northern Illinois Univ
-
Stephan Rosenkranz
MSD-Argonne National Lab, Argonne National Laboratory, Argonne Natl Lab, Argonne Nat'l Lab
-
Raymond Osborn
MSD-Argonne National Lab, Argonne Natl Lab, ANL, Argonne Nat'l Lab
-
Omar Chmaissem
NIU and ANL, Northern Illinois University and Argonne National Laboratory, Northern Illinois Univ
-
Feng Ye
Spallation Neutron Source, Oak Ridge National Laboratory, Oak Ridge Nat'l Lab, Oak Ridge National Laboratory
-
Jacob Ruff
CHESS, Cornell University, CHESS
-
Peter Gehring
NIST
-
Zuo-Guang Ye
Simon Fraser University, Simon Fraser Univ
-
Daniel Phelan
Argonne Natl Lab, MSD-Argonne National Lab, Argonne Nat'l Lab, Argonne National Laboratory