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-field imaging. In the X-ray imaging group at Monash, we develop these novel methods, working across theoretical foundations, experimental realisation, and practical applications. My research focuses on X
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of light, focusing on controlled light-matter interactions at the nanoscale. Driven by the fascinating optical physics and photonic applications across various fields, my work spans many topical areas in
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conferences (e.g., CVPR, ICCV, ECCV, NeurIPS, etc.), you will have a strong chance of receiving a full PhD scholarship. Applicants with a master WAM above 80 who are aiming to pursue a PhD with full scholarship
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are supported by quantum mechanical theoretical formalisms. Our fundamental findings yield promise for future applications in electronics, optoelectronics, spintronics, information processing and storage, sensing
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projects that involve data analysis, the application of artificial intelligence, the development of new detection techniques, and the exploration of new experimental methods through collaboration with our
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catheter probe based magnetic sensors for biological applications. To perform quantum sensing, we optically read-out the NV centre's electron spin state to quantify the perturbing effect of nearby
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. I am also interested in interdisciplinary research with a machine learning foundation. So if you’re interested in projects such as applications of ML in tracking geo-spatial changes (e.g., climate
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I supervise a wide range of projects at the intersection of photonics and nanotechnology, investigating how we can efficiently control light on the nanoscale. Applications are in areas such as
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awarded each year to different faculties by rotation. Note: Scholarship not currently offered. Applications Scholarship not currently offered Total scholarship value $55,537 p.a (2027 rate for current
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applications. Moiré metamaterials — engineering electronic and topological textures in twisted and strained heterostructures. Tuneable quantum phases — superconductivity, ferroelectricity, and correlated