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Researcher
- Kyle Kelley
- Rama K Vasudevan
- Sergei V Kalinin
- Vlastimil Kunc
- Ahmed Hassen
- Alice Perrin
- Anton Ievlev
- Bogdan Dryzhakov
- Christopher Ledford
- Dan Coughlin
- Jim Tobin
- Josh Crabtree
- Kevin M Roccapriore
- Kim Sitzlar
- Liam Collins
- Marti Checa Nualart
- Maxim A Ziatdinov
- Merlin Theodore
- Michael Kirka
- Neus Domingo Marimon
- Olga S Ovchinnikova
- Patxi Fernandez-Zelaia
- Ryan Dehoff
- Stephen Jesse
- Steven Guzorek
- Steven Randolph
- Subhabrata Saha
- Vipin Kumar
- Yan-Ru Lin
- Ying Yang
- Yongtao Liu

The invention introduces a novel, customizable method to create, manipulate, and erase polar topological structures in ferroelectric materials using atomic force microscopy.

High coercive fields prevalent in wurtzite ferroelectrics present a significant challenge, as they hinder efficient polarization switching, which is essential for microelectronic applications.

Through the use of splicing methods, joining two different fiber types in the tow stage of the process enables great benefits to the strength of the material change.

High strength, oxidation resistant refractory alloys are difficult to fabricate for commercial use in extreme environments.

This invention presents technologies for characterizing physical properties of a sample's surface by combining image processing with machine learning techniques.

This invention introduces a system for microscopy called pan-sharpening, enabling the generation of images with both full-spatial and full-spectral resolution without needing to capture the entire dataset, significantly reducing data acquisition time.