Cosmos

Structure and evolution of the Cosmos

Explores the vast complexities of the cosmos, focusing on the formation and interaction of galaxies, the early universe, dark matter, and cosmic expansion, contributing to groundbreaking discoveries like the accelerating expansion of the universe, a phenomenon pivotal to our understanding of cosmic evolution.

About

On the largest and most distant scales, astrophysicists and cosmologists at RSAA study many types of distant galaxies, investigate the nature of the early universe, and measure the expansion of space itself. Areas of study in these fields include:

  • understanding how galaxies form and interact with each other and their environments
  • observing how interactions between galaxies affect their development
  • the effects of internal processes, such as star formation and central supermassive black holes, on the growth of a galaxy
  • the role and nature of dark matter in the formation of structure in the universe
  • measuring the rate of acceleration of the expansion of the universe and understanding the implications for cosmological models
  • modelling and observing enigmatic phenomena such as gamma ray bursts, supernovae and other transients to understand the physical processes that cause them.

Research led by cosmologists at ANU led to the discovery that the Universe is expanding at an ever-increasing rate; work for which the 2011 Nobel Prize in Physics was awarded. RSAA astronomers continue to investigate what this means for theoretical models of the Universe, to understand the role of dark energy or the cosmological constant that drives this accelearation. They are also improving measurements of distance to the exploding stars, or supernovae, that are used as beacons in mapping the expansion rate to refine the results that constrain these models. One of the major goals for the SkyMapper Telescope's Southern Sky Survey is to discover tens of thousands of new supernova occurring in distant galaxies. This will significantly increase the sample of observed events and enable astronomers to make detailed follow-up observations to help improve understanding of the physical processes that occur during these stellar explosions.

Projects

This project aims to conceptualize a UV astronomical space mission to explore the interstellar medium (ISM) in the Milky Way and nearby Local Group Galaxies. Utilizing recent UV coating and detector advancements, the proposed mission involves high-throughput, compact UV spectroscopic instruments.

Student intake

Open for Bachelor, Honours students

People

To investigate the role of mergers with smaller galaxies in shaping our Milky Way by using the data from stellar surveys and cosmological simulations of the NIHAO suite to identify stellar remnants of galaxies that merged with the Milky Way and explain their role in building the main components of the Milky Way.

This research project employs the WiFeS spectrograph on the ANU 2.3m telescope at Siding Spring to measure nebular chemical abundances in isolated gas-rich dwarf galaxies in the Local Volume.

Student intake

Open for PhD students

People

This technical project aims to develop a new approach for fitting absorption and emission spectra simultaneously, employing Gradient Descent and Bayesian methods.

Student intake

Open for Honours students

People

Using both the Wide-Field Spectrograph (WiFeS) on the ANU 2.3m telescope and the 1.4 GHz radio band on the Australia Telescope Compact Array (ATCA), the student will address how the radio jets from the supermassive black hole interact with the Seyfert host galaxy to affect the evolution of the galaxy.

This project requires significant data analysis efforts and some observational and theoretical efforts.

Student intake

Open for Bachelor, PhD students

Members

Academic

Christoph Federrath

Associate Director HDR
Former ARC Future and Stromlo Fellow
Research School of Astronomy and Astrophysics

Faculty

Christoph Federrath

Associate Director HDR
Former ARC Future and Stromlo Fellow
Research School of Astronomy and Astrophysics

News

The Australian Research Council has announced that the Research School of Astronomy and Astrophysics has won funding for two prestigious Future Fellowships.

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By identifying a second galactic wind in one compact group, the results of Frédéric's research may help astronomers better understand the formation of galactic outflows.

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The group have been studying these supernovae for several years and having analysed their data, have come to the surprising conclusion that far from slowing down, the rate of expansion of the universe is actually speeding up.

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The researchers discovered proof of a vast filament of material that connects our Milky Way galaxy to nearby clusters of galaxies, which are similarly interconnected to the rest of the Universe.

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A PhD student at the ANU Research School of Astronomy and Astrophysics, Catherine Farage, is studying massive ellipticals in galaxy clusters, to look for clues that could help to explain the mechanisms behind the formation of large galaxies.

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