Established in 2020 Wednesday, April 17, 2024


Astronomers discover a new type of star covered in helium burning ashes
Artist's impression of a rare kind of stellar merger event between two white dwarf stars. Image courtesy: Nicole Reindl, Attribution (CC BY 4.0).



LONDON.- A team of German astronomers, led by Professor Klaus Werner of the University of Tübingen, have discovered a strange new type of star covered in the by-product of helium burning. It is possible that the stars might have been formed by a rare stellar merger event. The results were published in Monthly Notices of the Royal Astronomical Society.

While normal stars have surfaces composed of hydrogen and helium, the stars discovered by Werner and his colleagues have their surfaces covered with carbon and oxygen, the ashes of helium burning—an exotic composition for a star. The situation becomes more puzzling as the new stars have temperatures and radii that indicate they are still burning helium in their cores—a property typically seen in more evolved stars than those observed by Werner and his team in this study.

Published alongside the work of Professor Werner and his team, a second paper from a group of astronomers from the University of La Plata and the Max Planck Institute for Astrophysics offers a possible explanation for their formation. "We believe the stars discovered by our German colleagues might have formed in a very rare kind of stellar merger event between two white dwarf stars," says Dr. Miller Bertolami of the Institute for Astrophysics of La Plata, lead author of the second paper. White dwarfs are the remnants of larger stars that have exhausted their nuclear fuel, and are typically very small and dense.

Stellar mergers are known to happen between white dwarfs in close binary systems due to the shrinking of the orbit caused by the emission of gravitational waves. "Usually, white dwarf mergers do not lead to the formation of stars enriched in carbon and oxygen," explains Miller Bertolami. "But we believe that, for binary systems formed with very specific masses, a carbon- and oxygen-rich white dwarf might be disrupted and end up on top of a helium-rich one, leading to the formation of these stars."

Yet no current stellar evolutionary models can fully explain the newly discovered stars. The team need refined models in order to assess whether these mergers can actually happen. These models could not only help the team to better understand these stars, but could also provide a deeper insight into the late evolution of binary systems and how their stars exchange mass as they evolve. Until astronomers develop more refined models for the evolution of binary stars, the origin of the helium covered stars will be up for debate.

"Normally, we expect stars with these surface compositions to have already finished burning helium in their cores and to be on their way to becoming white dwarfs. These new stars are a severe challenge to our understanding of stellar evolution," explains Professor Werner.







Today's News

February 15, 2022

Preserved in tree resin: Bees became extinct before they were discovered

DNA testing exposes tactics of international criminal networks trafficking elephant ivory

Astronomers discover a new type of star covered in helium burning ashes

Scientists identify a gene that can repair congenital heart defects

Neutrinos are lighter than 0.8 electronvolts: Experiment limits neutrino mass with unprecedented precision

Cellular tornadoes sculpt organs

Combining traditional mandala coloring and brain sensing technologies to aid mindfulness

Enhanced forensic test confirms Neolithic fisherman died by drowning

Scientists discover how galaxies can exist without dark matter

How climate change is destroying Arctic coasts

A useful application for a quantum processor: The improvement of spectroscopy measurements

A microbial compound in the gut leads to anxious behaviors in mice

At bioenergy crossroads, should corn ethanol be left in the rearview mirror?

Testing rocks on Earth to help NASA's Perseverance work on Mars

Bacteria's hidden weapon: toxins locked inside a capsule secured by a cork

Megadrought in southwestern North America is region's driest in at least 1,200 years

Solar-powered system offers a route to inexpensive desalination

DisCo: boosting the efficiency of single-cell RNA sequencing



 


Editor & Publisher: Jose Villarreal
Art Director: Juan José Sepúlveda Ramírez



Tell a Friend
Dear User, please complete the form below in order to recommend the ResearchNews newsletter to someone you know.
Please complete all fields marked *.
Sending Mail
Sending Successful