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the electromagnetic spectrum. What are the transients from stars encountering binary black holes? Magnetic fields, jets and radiation hydrodynamics in black hole accretion flows. Crazy projects include: Did the Earth
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. Absorption of X-rays in an object provides conventional X-ray image contrast, but absorption of this ionizing radiation can induce cancer with sufficient exposure. However, X-rays also refract and scatter in
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- and many-body physics in scenarios ranging from superfluids to quantum impurity problems to light-matter coupled systems. A large part of my work is carried out within the Australian Centre
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My interests span a wide range of topics in theoretical physics, including: geometric phases, topological defects in matter and radiation fields, inverse problems (scalar and vector tomography
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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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stellar interiors, birth properties of black holes and neutron stars, supernova light curves and spectra, gravitational waves, neutrino astrophysics, the production of heavy elements stellar explosions, and
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and quantum impurities. I was previously part of the Australian Centre of Excellence for Future Low-Energy Electronics Technologies (FLEET), where I led the theoretical effort on light-matter coupled
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regularly conducts experiments at the Australian Synchrotron and international synchrotron facilities like Spring-8 in Japan and the European Synchrotron Radiation Facility in France. Some projects involve
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”) which can conduct electrons perfectly on its boundaries. I am also applying the unusual electronic properties of graphene to generate electricity from outgoing thermal radiation at night. Students will
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Zealand and Italy. "Structuring x-ray light to investigate the macro and microscale" "Dark-field x-ray imaging without optics" "Adding time to the X-ray Fokker-Planck Equation" (with Prof David Paganin