English

Autonomous Experiments in Scanning Probe Microscopy and Spectroscopy: Choosing Where to Explore Polarization Dynamics in Ferroelectrics

Disordered Systems and Neural Networks 2021-06-24 v2 Data Analysis, Statistics and Probability

Abstract

Polarization dynamics in ferroelectric materials are explored via the automated experiment in Piezoresponse Force Spectroscopy. A Bayesian Optimization framework for imaging is developed and its performance for a variety of acquisition and pathfinding functions is explored using previously acquired data. The optimized algorithm is then deployed on an operational scanning probe microscope (SPM) for finding areas of large electromechanical response in a thin film of PbTiO3, with metrics showing gains of ~3x in the sampling efficiency. This approach opens the pathway to perform more complex spectroscopies in SPM that were previously not possible due to time constraints and sample stability, tip wear, and/or stochastic sample damage that occurs at specific, a priori unknown spatial positions. Potential improvements to the framework to enable the incorporation of more prior information and improve efficiency further are discussed.

Keywords

Cite

@article{arxiv.2011.13050,
  title  = {Autonomous Experiments in Scanning Probe Microscopy and Spectroscopy: Choosing Where to Explore Polarization Dynamics in Ferroelectrics},
  author = {Rama K. Vasudevan and Kyle Kelley and Jacob Hinkle and Hiroshi Funakubo and Stephen Jesse and Sergei V. Kalinin and Maxim Ziatdinov},
  journal= {arXiv preprint arXiv:2011.13050},
  year   = {2021}
}
R2 v1 2026-06-23T20:31:05.678Z