AstronomyMetal scar found on cannibal star

Metal scar found on cannibal star

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This artist’s impression exhibits the magnetic white dwarf WD 0816-310, the place astronomers have discovered a scar imprinted on its floor because of having ingested planetary particles. Credit score: ESO/L. Calçada

When a star like our sun reaches the tip of its life, it could possibly ingest the encompassing planets and asteroids that have been born with it. Now, utilizing the European Southern Observatory’s Very Massive Telescope (ESO’s VLT) in Chile, researchers have discovered a novel signature of this course of for the primary time—a scar printed on the floor of a white dwarf star. The outcomes are printed in The Astrophysical Journal Letters.

“It’s well-known that some white dwarfs—slowly cooling embers of stars like our sun—are cannibalizing items of their planetary programs. Now now we have found that the star’s magnetic discipline performs a key position on this course of, leading to a scar on the white dwarf’s floor,” says Stefano Bagnulo, an astronomer at Armagh Observatory and Planetarium in Northern Eire, UK, and lead writer of the examine.

The scar the crew noticed is a focus of metals printed on the floor of the white dwarf WD 0816-310, the Earth-sized remnant of a star much like, however considerably bigger than, our sun.

“We’ve got demonstrated that these metals originate from a planetary fragment as massive as or presumably bigger than Vesta, which is about 500 kilometers throughout and the second-largest asteroid within the solar system,” says Jay Farihi, a professor at College School London, UK, and co-author on the examine.

The observations additionally supplied clues to how the star acquired its metal scar. The crew seen that the power of the steel detection modified because the star rotated, suggesting that the metals are targeting a selected space on the white dwarf’s floor, somewhat than easily unfold throughout it.

In addition they discovered that these modifications have been synchronized with modifications within the white dwarf’s magnetic discipline, indicating that this steel scar is situated on certainly one of its magnetic poles. Put collectively, these clues point out that the magnetic discipline funneled metals onto the star, creating the scar. Beforehand, astronomers have noticed quite a few white dwarfs polluted by metals that have been scattered over the floor of the star. These are identified to originate from disrupted planets or asteroids that veer too near the star, following star-grazing orbits much like these of comets in our solar system.

Nonetheless, for WD 0816-310, the crew is assured that vaporized materials was ionized and guided onto the magnetic poles by the white dwarf’s magnetic discipline. The method shares similarities to how auroras type on Earth and on Jupiter.

“Surprisingly, the fabric was not evenly combined over the surface of the star, as predicted by idea. As an alternative, this scar is a concentrated patch of planetary materials, held in place by the identical magnetic discipline that has guided the infalling fragments,” says co-author John Landstreet, a professor at Western College, Canada, who can also be affiliated with the Armagh Observatory and Planetarium. “Nothing like this has been seen earlier than.”

To achieve these conclusions, the crew used a “Swiss-army knife” instrument on the VLT referred to as FORS2, which allowed them to detect the steel scar and join it to the star’s magnetic discipline.

“ESO has the distinctive mixture of capabilities wanted to watch faint objects corresponding to white dwarfs, and sensitively measure stellar magnetic fields,” says Bagnulo. Of their examine, the crew additionally relied on archival knowledge from the VLT’s X-shooter instrument to substantiate their findings.

Harnessing the facility of observations like these, astronomers can reveal the majority composition of exoplanets, planets orbiting different stars exterior the solar system. This distinctive examine additionally exhibits how planetary programs can stay dynamically lively, even after “loss of life.”

Extra info:
Discovery of magnetically guided steel accretion onto a polluted white dwarf, The Astrophysical Journal Letters (2024). DOI: 10.3847/2041-8213/ad2619

Quotation:
Metallic scar discovered on cannibal star (2024, February 26)
retrieved 26 February 2024
from https://phys.org/information/2024-02-metal-scar-cannibal-star.html

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