Scanning Oscillator Piezoresponse Microscopy: new tools to explore domain wall dynamics
ORAL
Abstract
Dynamics of ferroelectric domain walls associated to domain wall switching are known to depend on bulk structure, being very sensitive to defects, chemical and structural pinning sites, as well asenvironmental conditions, modifying the electronic boundary conditions associated with screening dynamics.However, domain walls also show a sub-coercive field dynamics as a reversible motion, with vibrational statesthat strongly coupled to local structure and composition of the domain wall. In this presentation, we will show a novel microscopy mode based on a multifrequency approach which allows us to quantify domain wall oscillations under applied sub-coercive electric field, while simultaneously disentangle electrostatic from nanoeletromechanical signals, which can introduce severe distortions on the net piezoelectric response around neutral domain walls. This technique allows quick visualization of domain wall displacement, their velocities and dependence on pre-existing domain configurations and defects. When applied to lead titanate, this technique shows significant oscillations of the 180° domain walls between the antiparallel c+/c- domains. Further, the displacement and velocities distinctly depend on existing a-c domain structures and relativeorientations of domains. We will finally discuss about applications of this technique, including a wide range of stimuli such as light, heat, force and bias, to study dynamic phenomena in the second to sub-milisecond range.
* This work was supported by Center for Nanophase Materials Sciences (CNMS), which is a US Department of Energy, Office of Science User Facility at Oak Ridge National Laboratory.
–
Presenters
-
Neus Domingo Marimon
Oak Ridge National Lab
Authors
-
Neus Domingo Marimon
Oak Ridge National Lab
-
Stephen Jesse
Oak Ridge National Laboratory, Oak Ridge National Lab
-
Kyle P Kelly
Oak Ridge National Laboratory
-
Shivaranjan Raghuraman
Oak Ridge National Laboratory