About

The ANU Research School of Physics constitutes Australia’s largest university-based physics research activity, incorporating major national facilities, national networks, a significant technical manufacturing and prototyping capability, as well as an innovative teaching program.

Our research activity includes nonlinear and quantum optics and quantum systems engineering, soft and hard condensed matter physics, III-V semiconductor physics, nano-engineered and meso-scale materials, nuclear physics, novel imaging technologies and plasma science.

Our researchers have played important roles in some of the most significant breakthroughs in physics, including proving the existence of gravitational waves in 2016.

The observation of a gravitational wave, ripples in space caused by the collision of two black holes, confirms a prediction made by Albert Einstein's General Theory of Relativity 100 years ago, and opens up new fields in physics and astrophysics.

The important role that our researchers played included constructing, installing and commissioning crucial components of the detectors used by the Laser Interferometer Gravitational-wave Observatory (LIGO) in the United States.

Fundamental and applied research, just like this, also sparks the development of novel technologies and have seen a number of successful spin-out companies go global.

In 2009 Lithicon, then named Digitalcore, spun out of the Research School of Physics and Engineering. The big commercial step was taken after 10 years of fundamental research by ANU scientists. Their research combined novel scanning technology and advanced computer algorithms to produce high-resolution 3D images and simulations of fluids in oil reservoir rocks.

Fast forward to February 2014, and Lithicon was acquired for $US8 million by microscopic technology company FEI, cementing a very special research relationship with ANU.

Facilities

The Centre for Advanced Microscopy (CAM) provides state-of-the art microscopy and microanalysis equipment to researchers, students and industry partners.

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ANU Heavy Ion Accelerator Facility. Photo: James Coleman

The HIAF comprises one of the world’s largest 14UD pelletron accelerators and a superconducting “booster” linear accelerator (LINAC) housed and operated by ANU.

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Kioloa Campus

The 348-hectare ANU Kioloa Coastal Campus is one of Australia’s premier field stations, offering a diverse ecology which encourages research across all scientific disciplines.

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The ANU MakerSpace is an initiative by the Research School of Physics and Engineering, where we know people learn by doing.  

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The National Computational Infrastructure (NCI) is home to the Southern Hemisphere’s most highly-integrated supercomputer and filesystems, Australia’s highest performance research cloud, and one of the nation’s largest data catalogues—all supported by an expert team.

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The CPAS Podcast Studio is open to staff and students throughout ANU (not just scientists!) to record and grow podcast series. Your success is our success: we want to help you make the biggest and best podcast series in the world.  

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Science precinct

Our new $240-million science precinct on the ANU campus has state-of-the-art biological and chemical research laboratories, as well as a teaching hub.

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Designed by Eggleston, MacDonald and Secomb, the Forestry Building (#48) was officially opened on 16 May 1968 by HRH the Duke of Edinburgh with the unveiling of a wooden sculpture in the building’s main foyer.

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Articles

headshot of a man in a lab

Forge Photonics, a start up company using gravitational wave detection technology has launched, setting its sights on the $A120 billion global market for autonomous vehicle navigation systems.

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Peopl in a lab

Scientists have created lasers from perfect crystals one hundredth of the diameter of a human hair.

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man in quantum lab

Scientists have created materials with surprising optical properties, from arrays of lego-like cubes, made of caesium lead tri-bromide.

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Time

Society says time is money; but ANU physicist Peter Riggs says aspects of time might not even be real at all.

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Person in physics lab

Researchers have come up with a radical new algorithm to significantly boost the performance of quantum computers in certain problems, and also show that classical solutions can be just as good in other circumstances.

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A smiling woman leaning against a football table game

When Dr Lara Gillan visited Questacon as a child, she was too scared to drop into the infamous free fall. Now she’s conquering her fears by doing something “even more terrifying”. She's performing at Future Science Talks: Comedy Edition at Questacon this National Science Week.

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