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Astronomers have found that the Seven Sisters of the Pleiades star cluster have extra stellar siblings than we thought — much more.
Using NASA’s exoplanet looking spacecraft TESS (Transiting Exoplanet Survey Satellite) and the European Space Agency star monitoring spacecraft Gaia, scientists discovered that this extremely acquainted astronomical physique incorporates round 20 occasions extra stars than was beforehand recognized. The discovery not solely has wide-reaching implications for the research of younger star programs, but in addition cultural implications, as the Pleiades have been featured all through recorded historical past all over the world together with mentions within the Old Testament and the Talmud.
The scientists behind the discovery say it could shift how humanity views one of the most well-known groupings of stars visible to the naked eye. “This study changes how we see the Pleiades — not just seven bright stars, but thousands of long-lost siblings scattered across the whole sky,” Andrew Boyle, lead author and graduate student in physics and astronomy at UNC-Chapel Hill, said in a statement.
The beforehand hidden new members of the Pleiades have been found when a crew of researchers from UNC-Chapel Hill used knowledge from Gaia and TESS to measure the velocity of recognized stars’ rotations. These measurements can reveal familial associations between stars which have drifted aside as a result of the speed at which stars spin can be utilized as a cosmic ‘clock’ to find out their ages. Young stars spin extra quickly, whereas older stars spin extra slowly.
The crew’s new strategy of mapping stars by monitoring their rotation may reveal that many star clusters that have been beforehand unbiased are literally a part of a lot bigger stellar households.
“We’re realizing that many stars near the sun are part of massive extended stellar families with complex structures,” mentioned crew member Andrew Mann, professor of physics and astronomy at UNC-Chapel Hill. “Our work provides a new way to uncover these hidden relationships.”
Indeed, utilizing this method to hint the household bushes and delivery places of stars may assist monitor down the stellar household from which our personal star, the solar, originated, and that would offer scientists a a lot better understanding of how the photo voltaic system got here to be and the way our personal Milky Way galaxy took form.
“By measuring how stars spin, we can identify stellar groups too scattered to detect with traditional methods — opening a new window into the hidden architecture of our galaxy,” Boyle concluded.
The crew’s analysis was revealed on Wednesday (Nov.12) in The Astrophysical Journal.
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