JWST Imaging of Earendel, the Extremely Magnified Star at Redshift z = 6.2
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Published:2022-11-01
Issue:1
Volume:940
Page:L1
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ISSN:2041-8205
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Container-title:The Astrophysical Journal Letters
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language:
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Short-container-title:ApJL
Author:
Welch BrianORCID, Coe DanORCID, Zackrisson ErikORCID, Mink S. E. deORCID, Ravindranath SwaraORCID, Anderson JayORCID, Brammer GabrielORCID, Bradley LarryORCID, Yoon JinmiORCID, Kelly PatrickORCID, Diego Jose M.ORCID, Windhorst RogierORCID, Zitrin AdiORCID, Dimauro PaolaORCID, Jiménez-Teja YolandaORCID, Abdurro’uf ORCID, Nonino MarioORCID, Acebron AnaORCID, Andrade-Santos FelipeORCID, Avila Roberto J.ORCID, Bayliss Matthew B.ORCID, Benítez AlexORCID, Broadhurst TomORCID, Bhatawdekar RachanaORCID, Bradač MarušaORCID, Caminha Gabriel B.ORCID, Chen WenleiORCID, Eldridge JanORCID, Farag EbraheemORCID, Florian MichaelORCID, Frye BrendaORCID, Fujimoto SeijiORCID, Gomez SebastianORCID, Henry AlainaORCID, Hsiao Tiger Y.-YORCID, Hutchison Taylor A.ORCID, James Bethan L.ORCID, Joyce MeridithORCID, Jung IntaeORCID, Khullar GouravORCID, Larson Rebecca L.ORCID, Mahler GuillaumeORCID, Mandelker NirORCID, McCandliss StephanORCID, Morishita TakahiroORCID, Newshore Rosa, Norman ColinORCID, O’Connor Kyle, Oesch Pascal A.ORCID, Oguri MasamuneORCID, Ouchi MasamiORCID, Postman MarcORCID, Rigby Jane R.ORCID, Ryan Jr Russell E.ORCID, Sharma SoniyaORCID, Sharon KerenORCID, Strait VictoriaORCID, Strolger Louis-GregoryORCID, Timmes F. X.ORCID, Toft SuneORCID, Trenti MicheleORCID, Vanzella ErosORCID, Vikaeus AntonORCID
Abstract
Abstract
The gravitationally lensed star WHL 0137–LS, nicknamed Earendel, was identified with a photometric redshift z
phot = 6.2 ± 0.1 based on images taken with the Hubble Space Telescope. Here we present James Webb Space Telescope (JWST) Near Infrared Camera images of Earendel in eight filters spanning 0.8–5.0 μm. In these higher-resolution images, Earendel remains a single unresolved point source on the lensing critical curve, increasing the lower limit on the lensing magnification to μ > 4000 and restricting the source plane radius further to r < 0.02 pc, or ∼4000 au. These new observations strengthen the conclusion that Earendel is best explained by an individual star or multiple star system and support the previous photometric redshift estimate. Fitting grids of stellar spectra to our photometry yields a stellar temperature of T
eff ≃ 13,000–16,000 K, assuming the light is dominated by a single star. The delensed bolometric luminosity in this case ranges from
log
(
L
)
=
5.8
to 6.6 L
⊙, which is in the range where one expects luminous blue variable stars. Follow-up observations, including JWST NIRSpec scheduled for late 2022, are needed to further unravel the nature of this object, which presents a unique opportunity to study massive stars in the first billion years of the universe.
Funder
Space Telescope Science Institute
Publisher
American Astronomical Society
Subject
Space and Planetary Science,Astronomy and Astrophysics
Cited by
35 articles.
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