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ASTRONOMERS DISCOVER NEW CLASS OF COSMIC EXPLOSIONS SOURCE: NRAO Using a range of telescopes operating at different wavelengths, astronomers have found three separate objects that constitute a new class of cosmic explosions, in papers published in the Astrophysical Journal and the Astrophysical Journal Letters. The astronomers followed up on these objects first discovered using optical telescopes by observing them with two SKA pathfinders: the NSF’s Very Large Array in the US and NCRA’s Giant Metrewave Radio Telescope in India, as well as NASA’s Chandra X-ray space telescope. These so-called Fast Blue Optical Transients (FBOTs) probably begin the same way as certain supernovae and gamma-ray bursts – when a star much more massive than the Sun explodes at the end of its “normal” atomic fusion-powered life. However, FBOTs seem to be enshrouded by thick material that was probably shed by the star just before it exploded. When the thick material is struck by the blast wave of the explosion, it causes a bright visible-light burst. And as the blast wave collides with the material around the star as it travels outwards, it produces radio emission. The astronomers also found that all three objects are located in small, dwarf galaxies, which leads them to believe that the dwarf galaxy properties might allow some very rare evolutionary paths of stars that lead to these distinctive explosions. To better understand this new class of cosmic explosions, they hope to observe more FBOTs and their environments using telescopes covering a wide range of wavelengths.

Artist’s conception illustrates the phenomena that make up the new class of cosmic explosions called Fast Blue Optical Transients. Credit: Bill Saxton, NRAO/AUI/NSF

The artist’s conception illustrates the differences in phenomena resulting from an “ordinary” core-collapse supernova explosion, an explosion creating a gamma-ray burst, and one creating a Fast Blue Optical Transient. Credit: Bill Saxton, NRAO/AUI/NSF

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Analysing the impact of the SKA on science policy in Africa

1min
page 14

The cover

1min
pages 1, 36

Lessons learned from building a telescope in the Outback

4min
pages 18-19

EU-funded project supports the SKA

3min
page 19

Insights into the SKA-Max Planck dish demonstrator

7min
pages 16-17

Upcoming events

1min
page 35

SKA jobs

1min
page 35

Recent SKA news

1min
page 34

TeamSKA: Nathaneal Morgan

7min
pages 32-33

ASKAP helps to unveil Universe's missing matter

2min
pages 30-31

Astronomers discover new class of cosmic explosions

1min
page 29

Around the world, SKA partners contribute to pandemic response

5min
pages 11-12

FAST telescope turns to operations from construction

2min
page 28

SKA frequency and timing testing at the University of Manchester

2min
page 10

MeerKAT solves mystery of X-shaped galaxies

1min
page 27

Portuguese SKA white book released

1min
page 9

MeerKAT data reveals unexpected features in distant galaxy

1min
page 26

SKA-Low prototype antenna sparks commercial spinoff

1min
page 9

Meet the team: Legal

3min
page 25

Celebrating National Science Day in India

1min
page 8

Moving to a new reality

2min
page 24

Particle detector for SKA-Low calibrated in Germany

1min
page 7

2 minutes with...the Lord-Lieutenant of Cheshire

2min
page 24

Astronomy outreach goes virtual to support home-staying families

1min
page 6

Let's talk about...Cosmic magnetism

6min
pages 22-23

LOFAR seeks citizen scientists to hunt for black holes

1min
page 6

SKA Science team gearing up for Data Challenge #2

1min
page 5

South Africa ratifies the SKA Observatory Convention

1min
page 4

The Origin of Darkness and the Moon

1min
pages 20-21

Switzerland's EPFL joins SKAO

1min
page 4

Foreword by Prof. Philip Diamond

2min
page 3
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