Metaphotonics and metasurfaces for disruptive sensing technologies. This project aims to address a big challenge in nanophotonics by developing revolutionary methods for efficient chiral sensing of molecules without the need for spectrometry, frequency scanning, or moving mechanical parts, and to enhance chiroptical signals a hundredfold with the help of metasurface structures. Resonant metasurfaces are arrays of engineered dielectric nanoparticles with extraordinary characteristics, and they wo ....Metaphotonics and metasurfaces for disruptive sensing technologies. This project aims to address a big challenge in nanophotonics by developing revolutionary methods for efficient chiral sensing of molecules without the need for spectrometry, frequency scanning, or moving mechanical parts, and to enhance chiroptical signals a hundredfold with the help of metasurface structures. Resonant metasurfaces are arrays of engineered dielectric nanoparticles with extraordinary characteristics, and they would allow to overcome current limitations of chiral sensing analytical tools. Detecting chiral molecules in low concentrations is crucially important to many fields of biology, chemistry, and pharmacy, as well as to the food and cosmetics industries, constituting a market of tens of billions of dollars.Read moreRead less
Navigating tipping points in complex dynamical systems. This project aims to use applied mathematics to investigate the onset of tipping points in dynamical systems. Working with clinicians and practicing engineers, the project aims to contribute to the development of new treatment regimes for dynamical diseases and develop improved management strategies for resource focussed engineering industries. This should provide significant benefit to many areas, including the personalised treatment of di ....Navigating tipping points in complex dynamical systems. This project aims to use applied mathematics to investigate the onset of tipping points in dynamical systems. Working with clinicians and practicing engineers, the project aims to contribute to the development of new treatment regimes for dynamical diseases and develop improved management strategies for resource focussed engineering industries. This should provide significant benefit to many areas, including the personalised treatment of disease.Read moreRead less
Extreme wave events on the water surface. Giant waves observed in the ocean present a catastrophic threat to ships and offshore structures. Rogue waves in optical fibres, on the other hand, may help developing powerful light sources for long-distance telecommunications. This study of capillary rogue waves on the water surface will help to predict and control the probability of extreme waves.
Tracking 3000 years of agricultural adaptation to the resource poor, climate sensitive and remote Solomon Islands using biomarkers and palaeoecology. Establishing research programs with Pacific neighbours benefits Australia's relations with Pacific Island countries generally. This project applies novel research methods to understanding human adaptations to long-term environmental and climatic fluctuations. It will address the National Research Priority goal of responding to climate variability b ....Tracking 3000 years of agricultural adaptation to the resource poor, climate sensitive and remote Solomon Islands using biomarkers and palaeoecology. Establishing research programs with Pacific neighbours benefits Australia's relations with Pacific Island countries generally. This project applies novel research methods to understanding human adaptations to long-term environmental and climatic fluctuations. It will address the National Research Priority goal of responding to climate variability by advancing our understanding of recent climate change in the Australia/Pacific region. It will show that Australian researchers can play a significant role in understanding the spread of humans across the Pacific, and the environmental adaptations required by populations in resource depleted environments. It will increase collaboration between research institutions focusing on the Australia/Pacific region.Read moreRead less
Auger, Quantum Electro-Dynamics, Axions and New Technology. New technology developed by Australia, Sweden and the United States will be applied to major questions about the application of relativistic quantum mechanics to atomic structure and dynamics and spectroscopy, especially including critical issues in quantum electro-dynamics for atomic physics and applications. Discrepancies in quantum electro-dynamics have dominated international debate for decades, with claimed explanations annually fa ....Auger, Quantum Electro-Dynamics, Axions and New Technology. New technology developed by Australia, Sweden and the United States will be applied to major questions about the application of relativistic quantum mechanics to atomic structure and dynamics and spectroscopy, especially including critical issues in quantum electro-dynamics for atomic physics and applications. Discrepancies in quantum electro-dynamics have dominated international debate for decades, with claimed explanations annually failing to reveal the cause. Also a pattern of discrepancies has been seen at X-ray energies in first row metal atoms, with a similar sign and magnitude. A combined experimental an theoretical investigation will aim to reveal new light on these anomalies and serve to develop our understanding of the universe.Read moreRead less
Using fossil insects and plants to recognise past human impacts on Pacific island biodiversity. This project will enhance our ability to characterise human impact on island biodiversity. It will develop novel research methods that can be applied in the Australian context to understand changes in biodiversity that come with human impact. The contemporary emphasis on biosecurity in the protection of Australia's unique environment against human-introduced exotic pests and diseases can be better und ....Using fossil insects and plants to recognise past human impacts on Pacific island biodiversity. This project will enhance our ability to characterise human impact on island biodiversity. It will develop novel research methods that can be applied in the Australian context to understand changes in biodiversity that come with human impact. The contemporary emphasis on biosecurity in the protection of Australia's unique environment against human-introduced exotic pests and diseases can be better understood in the context of past introductions. Our project will demonstrate the role Australian archaeologists and natural scientists can play in understanding the spread of humans across the Pacific and the environmental consequences of colonisation. It will increase collaboration between research institutions in the Australia/Pacific region.Read moreRead less
Indian Textile Technology as archaeological evidence for population movements in Early Southeast Asia. This project uses archaeological textiles to investigate population movements in the late prehistoric period of Southeast Asia. It involves collaborative links between researchers from the Institute of Archaeology in Vietnam, the Centre for Southeast Asian Prehistory in Ho Chi Minh City, the Fine Arts Department of Thailand and museums and archaeological institutions in South India. It not only ....Indian Textile Technology as archaeological evidence for population movements in Early Southeast Asia. This project uses archaeological textiles to investigate population movements in the late prehistoric period of Southeast Asia. It involves collaborative links between researchers from the Institute of Archaeology in Vietnam, the Centre for Southeast Asian Prehistory in Ho Chi Minh City, the Fine Arts Department of Thailand and museums and archaeological institutions in South India. It not only profiles Australian expertise in Southeast Asia but facilitates high levels of communication and the exchange of ideas. Read moreRead less
Symmetries in CR-geometry. This project aims at investigating symmetries of geometric objects called CR-manifolds. It is expected to open new avenues for understanding such symmetries at the infinitesimal level and lead to ground-breaking results in CR-geometry. Expected outcomes include new methodology, solving long-standing problems, and establishing international research collaborations. The benefits are in enhancing the strength of the research in analysis and geometry performed in Australia ....Symmetries in CR-geometry. This project aims at investigating symmetries of geometric objects called CR-manifolds. It is expected to open new avenues for understanding such symmetries at the infinitesimal level and lead to ground-breaking results in CR-geometry. Expected outcomes include new methodology, solving long-standing problems, and establishing international research collaborations. The benefits are in enhancing the strength of the research in analysis and geometry performed in Australia, in fostering the international competitiveness of Australian research and in high-quality research training.Read moreRead less
Crossing the Green Sea: maritime mobility, trans-oceanic interaction and remote island colonisation in the tropical Indian Ocean. Australia is an Indian Ocean nation. It is strategically and politically important to understand our Indian Ocean neighbours, including small island nations such as the Maldives and Seychelles. Researching their history is part of this process. Building a collaborative research capacity between Australian and other Indian Ocean scholars, publishing the results of rese ....Crossing the Green Sea: maritime mobility, trans-oceanic interaction and remote island colonisation in the tropical Indian Ocean. Australia is an Indian Ocean nation. It is strategically and politically important to understand our Indian Ocean neighbours, including small island nations such as the Maldives and Seychelles. Researching their history is part of this process. Building a collaborative research capacity between Australian and other Indian Ocean scholars, publishing the results of research, building them into educational curricula, and maintaining a pool of Indian Ocean scholarly expertise in Australia is a national and community benefit. In addition, research results on the history of human colonisation and human impact on vulnerable environments will be significant to Australia as an island nation.Read moreRead less
Nilpotent associative algebras and spherical hypersurfaces. This project concerns pure basic research in mathematics and is based on an important recently discovered relationship between certain geometric and algebraic objects. In the project, this relationship will be applied in a novel way to solve several significant long-standing problems in the research area of complex geometry.