...the who's who,
and the what's what 
of the space industry

Space Careers

news Space News

Search News Archive

Title

Article text

Keyword

  • Home
  • News
  • ASU astronomer finds star fuel surrounding galaxies

ASU astronomer finds star fuel surrounding galaxies

Written by  Thursday, 20 January 2022 05:37
Write a comment
Tempe AZ (SPX) Jan 20, 2022
Most galaxies, including our own, grow by accumulating new material and turning them into stars - that much is known. What has been unknown is where that new material comes from and how it flows into galaxies to create stars. In a recently published study, Arizona State University astronomer Sanchayeeta Borthakur has identified the faint fuel reservoirs that surround galaxies, and how this

Most galaxies, including our own, grow by accumulating new material and turning them into stars - that much is known. What has been unknown is where that new material comes from and how it flows into galaxies to create stars.

In a recently published study, Arizona State University astronomer Sanchayeeta Borthakur has identified the faint fuel reservoirs that surround galaxies, and how this fuel can fall into galaxies, allowing them to form new stars and planetary systems. Her research has been published in the American Astronomical Society's Astrophysical Journal.

Previous research in the field of star formation suggested that some galaxies are producing more stars than what their reserve of star-forming gas would allow. This implied to Borthakur, who is an assistant professor at ASU's School of Earth and Space Exploration, that new gas must be coming into the galaxies and supporting the formation of new stars and planets.

"Observations of galaxies are similar to looking through an airplane window at night and seeing bright city lights surrounded by darkness. Finding this fuel source is like discovering that in the darkness lies the farms and supply routes that support the populations in the cities," explains Borthakur.

To determine where the gas might be originating, Borthakur used a statistical method known as cross-correlation (to measure the association between two quantities), and data from two publicly available astronomy catalogues: the ALFALFA survey from the Arecibo telescope and the Survey of the Low-Redshift Intergalactic Medium from the Hubble Space Telescope's Cosmic Origins Spectrograph. With those data, she was able to quantify how gas-rich galaxies are associated with clouds seen in the intergalactic medium.

"It's like discovering the existence and the location of gas stations in an image of a city full of vehicles," says Borthakur.

For next steps, she hopes to identify the pathways through which these gas clouds can reach the inner regions of the galaxies where stars are formed.

"Galaxies like ours will continue to grow by forming many more solar systems as new material comes in," she says. "Understanding the source of the star fuel allows us to predict if new stars will be formed in the future."

Research Report: "How are Lya Absorbers in the Cosmic Web Related to Gas-rich Galaxies"


Related Links
School of Earth and Space Exploration at ASU
Stellar Chemistry, The Universe And All Within It

Tweet

Thanks for being there;
We need your help. The SpaceDaily news network continues to grow but revenues have never been harder to maintain.

With the rise of Ad Blockers, and Facebook - our traditional revenue sources via quality network advertising continues to decline. And unlike so many other news sites, we don't have a paywall - with those annoying usernames and passwords.

Our news coverage takes time and effort to publish 365 days a year.

If you find our news sites informative and useful then please consider becoming a regular supporter or for now make a one off contribution.

SpaceDaily Monthly Supporter
$5+ Billed Monthly

SpaceDaily Contributor
$5 Billed Once

credit card or paypal



STELLAR CHEMISTRY
Team of astronomers finds widest separation of brown dwarf pair to date
Tempe AZ (SPX) Jan 14, 2022
A team of astronomers, led by Arizona State University undergraduate student Emma Softich, has discovered a rare pair of brown dwarfs that has the widest separation of any brown dwarf binary system found to date. Brown dwarfs are celestial objects that are smaller than a normal star and without sufficient mass to sustain nuclear fusion, but that are hot enough to radiate energy. Many brown dwarfs have been discovered with data from NASA's Wide-field Infrared Survey Explorer (WISE) via the Backyard ... read more


Read more from original source...

You must login to post a comment.
Loading comment... The comment will be refreshed after 00:00.

Be the first to comment.

Interested in Space?

Hit the buttons below to follow us...