Australian Laureate Fellowships - Grant ID: FL220100117
Funder
Australian Research Council
Funding Amount
$2,497,216.00
Summary
How Old Are The Stars? Looking Inside Stars with Asteroseismology. Stars are the building blocks of the Universe. Understanding their structure and evolution underpins much of modern astrophysics, from characterising the growing number of extra-solar planets to unravelling the history of our Milky Way Galaxy. This research program will use the technique of asteroseismology, the study of starquakes, to probe the interiors of stars in extraordinary detail and measure their ages with unprecedented ....How Old Are The Stars? Looking Inside Stars with Asteroseismology. Stars are the building blocks of the Universe. Understanding their structure and evolution underpins much of modern astrophysics, from characterising the growing number of extra-solar planets to unravelling the history of our Milky Way Galaxy. This research program will use the technique of asteroseismology, the study of starquakes, to probe the interiors of stars in extraordinary detail and measure their ages with unprecedented precision. Having accurate ages for large numbers of stars will help us understand how the Milky Way galaxy formed and developed. We will generate a deep understanding of the processes that occur inside stars, mentor a new generation of researchers and establish Australia as a world leader in stellar astrophysics.Read moreRead less
New Dimensions in Radio Astronomy: Mining Sparse Datasets with the Australian Square Kilometre Array Pathfinder. Radio astronomy is entering a new era, driven by technological advances that make rapid surveys of the sky possible. As leaders of three major surveys for the Australian Square Kilometre Array Pathfinder (ASKAP) telescope, we will explore three new dimensions of astronomy: searching for transient sources, detecting faint galaxies and investigating cosmic magnetism. The project will pu ....New Dimensions in Radio Astronomy: Mining Sparse Datasets with the Australian Square Kilometre Array Pathfinder. Radio astronomy is entering a new era, driven by technological advances that make rapid surveys of the sky possible. As leaders of three major surveys for the Australian Square Kilometre Array Pathfinder (ASKAP) telescope, we will explore three new dimensions of astronomy: searching for transient sources, detecting faint galaxies and investigating cosmic magnetism. The project will put Australian astronomers at the forefront of international research. In addition to novel scientific results we will produce data resources and software that will be critical for future Square Kilometre Array projects. These will be available online to amateur astronomers and the general public. We will train the next generation of astronomers with the skills required to make breakthrough discoveries.Read moreRead less
Caught in the act by PAndAS: An unparalleled view of galaxy evolution. How do galaxies, like our own Milky Way, form? Using a new survey of the nearby cosmos, we will search for the signatures of galactic cannibalism, the disrupted bodies of smaller galaxies, and use this archaeology to piece together the formation history. We will also reveal the presence of local dark matter, whose action has shaped our own galaxy's formation.
Australian Laureate Fellowships - Grant ID: FL100100114
Funder
Australian Research Council
Funding Amount
$2,784,765.00
Summary
A Survey of the Universe's Magnetism. This project will significantly advance our understanding of the structure and evolution of the Universe and will maintain our nation's outstanding track record of astronomical discovery by delivering ground-breaking world-class scientific discoveries, produced by Australian astronomers using an Australian telescope. The project will help demonstrate the viability of the technology that Australia is advocating for the design of the Square Kilometre Array by ....A Survey of the Universe's Magnetism. This project will significantly advance our understanding of the structure and evolution of the Universe and will maintain our nation's outstanding track record of astronomical discovery by delivering ground-breaking world-class scientific discoveries, produced by Australian astronomers using an Australian telescope. The project will help demonstrate the viability of the technology that Australia is advocating for the design of the Square Kilometre Array by carrying out innovative experiments with powerful new instrumentation. Finally, the project will provide new capacity for research and innovation by training the next generation of scientists and by providing them with unique skills and expertise.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE190100375
Funder
Australian Research Council
Funding Amount
$315,000.00
Summary
Extragalactic archaeology: our galaxy as a rosetta stone of galaxy evolution. This project aims to measure the stellar populations of nearby galaxies that are apparently similar to the Milky Way. The stellar population of a galaxy provides a fossil record of its entire history and is a key window into galaxy evolution. The project will use the well-studied stellar population of our own galaxy as a galactic Rosetta Stone to interpret the light from nearby galaxies, revealing their chemical compos ....Extragalactic archaeology: our galaxy as a rosetta stone of galaxy evolution. This project aims to measure the stellar populations of nearby galaxies that are apparently similar to the Milky Way. The stellar population of a galaxy provides a fossil record of its entire history and is a key window into galaxy evolution. The project will use the well-studied stellar population of our own galaxy as a galactic Rosetta Stone to interpret the light from nearby galaxies, revealing their chemical compositions and star formation histories. This project will advance understanding of galaxy evolution and reveal the evolutionary history of galaxies that are similar to our own Milky Way. The highly novel approach used will enable Australia to capitalise on its investment in optical astronomy, provide training and inspiration for the next generation of scientists, and maintain Australia’s international reputation for cutting-edge optical astronomy research.Read moreRead less
Caught in the act: an unparalleled view of galaxy evolution. How do galaxies, like our own Milky Way, form? Using a new survey of the nearby cosmos, this project will search for the signatures of galactic cannibalism, the disrupted bodies of smaller galaxies, and use this archaeology to piece together the formation history. This project will also reveal the presence of local dark matter, whose action has shaped our own formation.
Discovery Early Career Researcher Award - Grant ID: DE200100461
Funder
Australian Research Council
Funding Amount
$353,379.00
Summary
The mysterious thick disk: Unifying Galactic and extragalactic dynamics. The origin of the Milky Way’s ancient thick disk currently defies any easy explanation. This project aims to resolve this problem and will directly challenge existing models of disk formation. The new innovative approach to answering this question will be to simultaneously measure both the chemical and dynamical properties of nearby Milky Way analogues. By unifying the perspectives of Galactic and extragalactic dynamics the ....The mysterious thick disk: Unifying Galactic and extragalactic dynamics. The origin of the Milky Way’s ancient thick disk currently defies any easy explanation. This project aims to resolve this problem and will directly challenge existing models of disk formation. The new innovative approach to answering this question will be to simultaneously measure both the chemical and dynamical properties of nearby Milky Way analogues. By unifying the perspectives of Galactic and extragalactic dynamics the project seeks to deliver new understandings about thick disk formation. Expected outcomes include, robust new evidence about disk galaxy formation, discovery of a large number of dynamical Milky Way analogues, and establishing the most plausible Milky Way formation pathway from cosmological simulations.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE140100598
Funder
Australian Research Council
Funding Amount
$346,980.00
Summary
The GALAH survey: A million-star exploration of Galactic history. The GALactic Archaeology with HERMES (GALAH) survey is an observational study of the orbital motions and chemical compositions of a million stars in our Galaxy, set to begin in late 2013. This type of data is central to understanding how star formation, stellar migration and galaxy mergers have shaped the Milky Way. The unprecedented scale of this new survey will allow an extraordinarily clear view into Galactic history. This proj ....The GALAH survey: A million-star exploration of Galactic history. The GALactic Archaeology with HERMES (GALAH) survey is an observational study of the orbital motions and chemical compositions of a million stars in our Galaxy, set to begin in late 2013. This type of data is central to understanding how star formation, stellar migration and galaxy mergers have shaped the Milky Way. The unprecedented scale of this new survey will allow an extraordinarily clear view into Galactic history. This project will use this data to make the first definitive determination of the role of minor galaxy mergers in the assembly of the Milky Way. Since our own galaxy and its nearest neighbours are the only ones that can be studied at this level of star-by-star detail, the GALAH survey is also a crucial step forward in our understanding of all spiral galaxies.Read moreRead less