About
Kayla Fallon is a Research Fellow in the School of Physics & Astronomy at the University of Glasgow. Her research focuses on nanomagnetism, skyrmion dynamics, and advanced microscopy techniques applied to magnetic materials. Key areas include antiferromagnetic/ferromagnetic phase transitions, spin textures in multilayer systems, and defect-engineered materials.
Her work utilizes cutting-edge techniques like Lorentz microscopy and electron holographic tomography to study nanoscale magnetic phenomena. Recent studies have concentrated on skyrmion nucleation in synthetic antiferromagnets and CoB/CoFeB multilayers, as well as phase domain development in FeRh thin films. Fallon collaborates extensively with institutions and researchers globally, contributing to datasets on magnetostructural transitions and domain wall dynamics.
Publications span high-impact journals such as Physical Review B, Nano Letters, and Small, reflecting her interdisciplinary approach to materials science and condensed matter physics. No academic awards are listed, though her active research profile suggests potential for future recognitions in magnetic materials.
Her projects involve advanced characterization techniques, including quantitative TEM and differential phase contrast imaging, reflecting a commitment to precision measurement in nanomagnetism.




