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ANTARES microprobe

High-energy heavy ion microprobe

The high-energy heavy-ion microprobe is used for the characterisation or modification of material properties at depths from approximately 1 micrometre to maximum depths of up to 500 micrometres from the material surface. 

Antares accelerator

10MV ANTARES Accelerator

The 10MV tandem accelerator ANTARES is a state-of-the-art facility for ion beam analysis and accelerator mass spectrometry.

Improving the radiation tolerance of microelectronics for space

A team of Melbourne researchers and international partners from Italian Instituto Nazionale de Fisica Nucleare (INFN) and CERN, who are developing radiation-hardened semiconductor chips, used the unique state-of-art high energy ion microprobe on the SIRIUS ion accelerator at ANSTO’s Centre for Accelerator Science to test a prototype radiation-resistant computer chip

International Space Station

Understanding the full impact of radiation on astronauts

In collaboration with the French National Institute of Health and Medical Research (INSERM) and the French International Space Agency (CNES), ANSTO scientists are undertaking research on the radiobiological effects of secondary particles that are created when radiation interacts with the shielding on the International Space Station.

Understanding the full impact of radiation on astronauts

Understanding the full impact of radiation on astronauts

In space, without the protection of the magnetosphere, the type and dose of radiation is considerably different to what is naturally experienced on earth. However, it is the secondary particles of lower energies created when galactic and cosmic radiation interacts with shielding that is of concern for astronauts.

Capabilities ANSTO Facilities

Capabilities

ANSTO provides access to specialised facilities and capabilities by application. Please ensure that you contact the relevant ANSTO scientist for advice before submitting a proposal.

Archive of publications 2017 and prior

Archive

Archive of ANSTO research publications, seminars and short talks.

Beamtime Guide - X-ray Fluorescence Microscopy

Beamtime Guide - XFM

Beamtime Guide on the X-ray Fluorescence Microscopy beamline at the Australian Synchrotron.

MEX Hutch A

Medium Energy X-ray Absorption Spectroscopy Beamline (MEX-1 and MEX-2)

The Medium Energy- X-ray Absorption Spectroscopy beamlines will provide access to XANES and EXAFS data from a bending magnet source, optimised for cutting-edge applications in biological, agricultural and environmental science in an energy range that is not currently available at the Australia Synchrotron.

ANSTO helping to ensure the safety of astronauts in space

A team of ANSTO health researchers, staff at the Centre for Accelerator Science and Dr Melanie Ferlazzo, a postdoc from the French National Institute of Health and Medical Research (INSERM), and scientists from the French Space Agency (CNES), are collaborating on investigations to determine the impact of secondary particles on human cells using the new microprobe beamline at ANSTO’s Centre for Accelerator Science.

Nanoprobe Satellite Building

Nanoprobe beamline (NANO) UNDER CONSTRUCTION

The X-ray Fluorescence Nanoprobe beamline undertakes high-resolution X-ray microspectroscopy, elemental mapping and coherent diffraction imaging – providing a unique facility capable of spectroscopic and full-field imaging. Elemental mapping and XANES studies will be possible at sub-100 nm resolution, with structural features able to be studied down to 15 nm using scanning X-ray diffraction microscopy.

Pagination