Area of research
Atomic and Molecular Physics, and Optics · Biomedical Engineering
Research interest
Research interests include Force Microscopy Techniques and Applications, Mechanical and Optical Resonators, Near-Field Optical Microscopy, and Ferroelectric and Piezoelectric Materials.
Lateral force microscopy calibration using an interferometric atomic force microscope.
Machine Learning-Based Reward-Driven Tuning of Scanning Probe Microscopy: Toward Fully Automated Microscopy.
Reward based optimization of resonance-enhanced piezoresponse spectroscopy
3D Vector Piezoresponse Imaging with Interferometric Atomic Force Microscopy.
Accurate vertical nanoelectromechanical measurements
Nanoscale Rheology: Dynamic Mechanical Analysis over a Broad and Continuous Frequency Range Using Photothermal Actuation Atomic Force Microscopy.
Integration of scanning probe microscope with high-performance computing: Fixed-policy and reward-driven workflows implementation.
Unraveling Piezoelectricity of Two-Dimensional Ferroelectric Metal 1T′′-MoS<sub>2</sub>
High-Speed Nanomechanical Mapping of the Early Stages of Collagen Growth by Bimodal Force Microscopy.
Correlating Crystallographic Orientation and Ferroic Properties of Twin Domains in Metal Halide Perovskites.
Enhanced ferroelectricity in ultrathin films grown directly on silicon
Nanoscale Mass Spectrometry Multimodal Imaging <i>via</i> Tip-Enhanced Photothermal Desorption.
Quantitative Electromechanical Atomic Force Microscopy.