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I supervise computational projects in electron microscopy imaging for investigating materials at atomic resolution. Some projects centre on analysing experimental data acquired by experimental
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The goal of my research is to synthesise and characterise functional low-dimensional materials with atomic-scale precision and tailored electronic, optoelectronic, magnetic and chemical properties
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fields and control systems. In addition to this, simulations of electron spins and subsequent data analysis are also an important aspect of our work. Wide-field quantum microscopy of exotic materials High
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Peterson). This project combines both theory and experiment. "Geometric-flow across diffraction patterns in 4D scanning transmission electron microscopy” (with Assoc Prof Scott Findlay and Dr Timothy
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at the Melbourne Centre for Nanofabrication, followed by measuring their electronic properties and/or studying them with atomic-resolution scanning tunnelling microscopy. "interfacing topological insulators with
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to understand glass structures. Students in my team will be able to perform measurements at the Monash Centre for Electron Microscopy or the Australian Synchrotron. They will have the opportunity to collaborate
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I supervise a broad portfolio of projects in surface and materials physics, with a strong focus on novel electronic materials such as topological insulators, moiré metamaterials, and atomically thin
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and may include travel to one of our collaborator labs above. All the projects will make use of the world-class instruments at the Monash Centre for Electron Microscopy with unique electron-optics