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Silicon irradiation

ANSTO is one of the world's leading providers of irradiation services for silicon ingots, which are used by the multimillion dollar electronics industry across Europe and Asia. Each year, ANSTO irradiates more than 50 tonnes of silicon.

Licence awarded

Australia’s new state-of-the-art nuclear medicine facility gets green light.

Jenolan caves

Reconstructing Australia’s fire history from cave stalagmites

Research is being undertaken through an Australian Research Council Discovery Project "Reconstructing Australia’s fire history from cave stalagmites", led by Professor Andy Baker at UNSW Sydney and Dr. Pauline Treble at ANSTO. The project aims to calibrate the fire-speleothem relationship and develop coupled fire and climate records for the last millennium in southwest Australia.

mining site

Minerals

ANSTO's Minerals team provides consultancy, process development and research services to the mining and minerals processing industries.

Appointment of new ANSTO CEO

The Chair of ANSTO, The Hon Dr Annabelle Bennett, AC SC, announced today that Mr Shaun Jenkinson has been appointed Chief Executive Officer of ANSTO following a global search for the position.

OPAL Reactor Core

What is radiation?

Radiation can be described as energy or particles from a source that travel through space or other mediums. Light, heat, and wireless communications are all forms of radiation.

nandin Innovation Centre team and building

PhD Scholarship - Innovation, Design and Technology

Three-year full-time PhD program is in partnership between the nandin Innovation Centre (ANSTO) and Design Factory Melbourne (Swinburne University). The PhD is based at ANSTO, Lucas Heights, Sydney, NSW.

Cryogenic Permanent Magnet Undulator (CPMU) source for the BRIGHT Nanoprobe beamline

Nanoprobe beamline (NANO) - under construction

The BRIGHT Nanoprobe beamline provides a unique facility capable of spectroscopic and full-field imaging. NANO will undertake high-resolution elemental mapping and ptychographic coherent diffraction imaging. Elemental mapping and XANES studies (after DCM upgrade) will be possible at sub-100 nm resolution, with structural features able to be studied down to 15 nm using ptychography.

Pagination