More on Gravitational waves "know" how black holes grow

A paper in a recent issue of the journal Science pits the front-running ideas about the growth of supermassive black holes against observational data -- a limit on the strength of gravitational waves from pairs of black holes, obtained with CSIRO's 64-m Parkes radio telescope in eastern Australia.

More on Gravitational waves "know" how black holes grow
CSIRO's Parkes radio telescope [Credit: Wayne England]
The study was jointly led by Dr Ryan Shannon, a Postdoctoral Fellow with CSIRO, and Mr Vikram Ravi, a PhD student co-supervised by the University of Melbourne (Australia) and CSIRO.

"For the first time, we've used information about gravitational waves as a tool in astrophysics," said Dr Shannon.

"It's a powerful new tool. These black holes are very hard to observe directly, so this is a new chapter in astronomy."

"One model for black-hole growth has failed our test and we're painting the others into a corner. They may not break, but they'll have to bend," said Mr Ravi.

Einstein predicted gravitational waves -- ripples in space-time, generated by bodies changing speed or direction. Bodies, for instance, such as pairs of black holes orbiting each other.

When galaxies merge, their resident central black holes are doomed to meet. They first waltz together then enter a desperate embrace and merge.

"Theorists predict that towards the end of this dance they're growling out gravitational waves at a frequency we're set up to detect," Dr Shannon said.

Played out again and again across the Universe, such encounters create a background of gravitational waves, like the noise from a restless crowd.