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My research focuses on strongly interacting quantum systems at the interface between condensed matter physics and ultracold atomic gases. In particular, I am interested in the interplay between few
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in Physics (1956). Eligibility To be eligible, candidates must be: An Australian citizen, Australian permanent resident, New Zealand citizen, Permanent Humanitarian visa holder or international student
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beach rocks, a bio-inspired cementation technology will be developed. A novel bio-sintering process is proposed through successive dissolution and remineralization of limestone utilizing the microbes
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Local students applying for a place in a higher degrees by research (HDR) program will automatically be considered for an Australian Government Research Training Program (RTP) Fees-Offset (Domestic
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between theoretical and computational high-energy physics. The research contributes to the world-leading PYTHIA Monte Carlo Event Generator, which serves as the baseline for the majority of experimental
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available at the Centre for Optimisation and Decision Science at Curtin University. The research will focus on developing robust adaptive techniques for solving complex problems in mathematical physics
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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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Glasses are a mystery that confounds modern condensed matter physics, yet disordered, glassy assemblies form from particles at many length sclaes (granules, colloids, atoms). My research aims
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computational while other work will involve time spent in the lab. Search for physics beyond the Standard Model in penguin decays in data from the LHCb experiment. Identify particle identification requirements
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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