Home » Advanced radio telescope technology ‘sifts’ space for mysteries

Advanced radio telescope technology ‘sifts’ space for mysteries

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Wajarri artist, Judith Anaru, painted a fast radio burst as part of a series commissioned by CSIRO to celebrate the research being undertaken with CSIRO’s ASKAP radio telescope on Wajarri Country. Credit: Judith Anaru, CRAFT, 2019

The first trial of an Australian-developed technology has detected mysterious objects by sifting through signals from space like sand on a beach.

Astronomers and engineers at CSIRO, Australia’s national science agency, developed the specialized system, CRACO, for their ASKAP radio telescope to rapidly detect mysterious and other space phenomena.

The new has now been put to the test by researchers led by the Curtin University node of the International Center for Radio Astronomy (ICRAR) in Western Australia.

Results published in Publications of the Astronomical Society of Australia present the discovery of two fast radio bursts and two sporadically-emitting neutron stars, and improved location data of four pulsars, enabled by the new technology. They have since gone on to find more than twenty fast radio bursts.

Dr. Andy Wang from ICRAR, who led the research group and tested CRACO, said the team had found more astronomical objects than expected.







Dr. Andy Wang explaining the discoveries his team made while commissioning CSIRO’s CRACO instrument. Credit: ICRAR

“We were focused on finding fast radio bursts, a mysterious phenomenon that has opened up a new field of research in astronomy.

“CRACO is enabling us to find these bursts better than ever before. We have been searching for bursts 100 times per second and in the future we expect this will increase to 1,000 times per second,” Dr. Wang said.

CSIRO astronomer and engineer Dr. Keith Bannister who, along with his team, developed the instrument, says the scale of observation enabled by the new technology is enormous.

Australian innovation 'sifts' space for mysteries
CSIRO’s ASKAP radio telescope is made up of 36 dishes spread out across 6km on Wajarri Country. Credit: Alex Cherney/CSIRO

“CRACO taps into ASKAP’s ‘live’ view of the sky in search of fast radio bursts.

“To do this, it scans through huge volumes of data—processing 100 billion pixels per second—to detect and identify the location of bursts.

“That’s the equivalent of sifting through a whole beach of sand to look for a single five-cent coin every minute,” Dr. Bannister said.

CRACO is made up of a cluster of computers and accelerators connected to the ASKAP radio telescope at Inyarrimanha Ilgari Bundara, the CSIRO Murchison Radio-astronomy Observatory in Wajarri Yamaji Country. Development of this technology reinforces Australia’s international reputation as a leader in engineering and research.

Australian innovation 'sifts' space for mysteries
Example of a galaxy hosting a fast radio burst identified by the CRACO system. Credit: Yuanming Wang, the CRAFT Collaboration

“Once at full capacity, CRACO will be a game changer for international astronomy,” Dr. Wang said.

CRACO has been engineered to sift through the trillions of pixels received by the telescope to find anomalies, alerting researchers the moment it spots something out of the ordinary, allowing them to quickly follow up to obtain more data and complete their own analysis.

Dr. Wang and his team increasingly expanded CRACO’s research targets to find more exotic sources.

“We’re also detecting long-period transients, which remain mysterious objects within our galaxy. Both fast radio bursts and these transients were first discovered in Australia, so it is great that we’re continuing the path of discovery with this impressive technology,” Dr. Wang said.

CRACO will soon be made available to all over the world as part of CSIRO’s Australia Telescope National Facility, a suite of national research infrastructure which includes Murriyang, CSIRO’s Parkes radio telescope.

More information:
Z. Wang et al, The CRAFT coherent (CRACO) upgrade I: System description and results of the 110-ms radio transient pilot survey, Publications of the Astronomical Society of Australia (2025). DOI: 10.1017/pasa.2024.107

Citation:
Advanced radio telescope technology ‘sifts’ space for mysteries (2025, January 27)
retrieved 27 January 2025
from https://phys.org/news/2025-01-advanced-radio-telescope-technology-sifts.html

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