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A stellar stream remnant of a globular cluster below the metallicity floor
by
Starkenburg, Else
, Yuan, Zhen
, Thomas, Guillaume F.
, Mashonkina, Lyudmila I.
, Malhan, Khyati
, Navarro, Julio F.
, Allende Prieto, Carlos
, Fouesneau, Morgan
, Jablonka, Pascale
, Bonifacio, Piercarlo
, Venn, Kim A.
, Martin, Nicolas F.
, Sánchez-Janssen, Rubén
, Aguado, David S.
, Carlberg, Raymond G.
, Lardo, Carmela
, Ibata, Rodrigo A.
, Hill, Vanessa
, Kordopatis, Georges
, Caffau, Elisabetta
, Arentsen, Anke
, Mucciarelli, Alessio
, Sestito, Federico
, González Hernández, Jonay I.
, McConnachie, Alan W.
, Fabbro, Sébastien
in
639/33/34/863
/ 639/33/34/867
/ Barium
/ Carbon
/ chemical analysis
/ cluster analysis
/ dispersion
/ Ejecta
/ Fossils
/ Galactic clusters
/ Galaxies
/ Globular clusters
/ Humanities and Social Sciences
/ instrumentation
/ Iron
/ Iron content
/ Metal content
/ Metallicity
/ Milky Way
/ multidisciplinary
/ Science
/ Science (multidisciplinary)
/ Sciences of the Universe
/ Spectrum analysis
/ Star & galaxy formation
/ Stars
/ Stars & galaxies
/ Stellar systems
/ stream
/ temperature effect
2022
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A stellar stream remnant of a globular cluster below the metallicity floor
by
Starkenburg, Else
, Yuan, Zhen
, Thomas, Guillaume F.
, Mashonkina, Lyudmila I.
, Malhan, Khyati
, Navarro, Julio F.
, Allende Prieto, Carlos
, Fouesneau, Morgan
, Jablonka, Pascale
, Bonifacio, Piercarlo
, Venn, Kim A.
, Martin, Nicolas F.
, Sánchez-Janssen, Rubén
, Aguado, David S.
, Carlberg, Raymond G.
, Lardo, Carmela
, Ibata, Rodrigo A.
, Hill, Vanessa
, Kordopatis, Georges
, Caffau, Elisabetta
, Arentsen, Anke
, Mucciarelli, Alessio
, Sestito, Federico
, González Hernández, Jonay I.
, McConnachie, Alan W.
, Fabbro, Sébastien
in
639/33/34/863
/ 639/33/34/867
/ Barium
/ Carbon
/ chemical analysis
/ cluster analysis
/ dispersion
/ Ejecta
/ Fossils
/ Galactic clusters
/ Galaxies
/ Globular clusters
/ Humanities and Social Sciences
/ instrumentation
/ Iron
/ Iron content
/ Metal content
/ Metallicity
/ Milky Way
/ multidisciplinary
/ Science
/ Science (multidisciplinary)
/ Sciences of the Universe
/ Spectrum analysis
/ Star & galaxy formation
/ Stars
/ Stars & galaxies
/ Stellar systems
/ stream
/ temperature effect
2022
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A stellar stream remnant of a globular cluster below the metallicity floor
by
Starkenburg, Else
, Yuan, Zhen
, Thomas, Guillaume F.
, Mashonkina, Lyudmila I.
, Malhan, Khyati
, Navarro, Julio F.
, Allende Prieto, Carlos
, Fouesneau, Morgan
, Jablonka, Pascale
, Bonifacio, Piercarlo
, Venn, Kim A.
, Martin, Nicolas F.
, Sánchez-Janssen, Rubén
, Aguado, David S.
, Carlberg, Raymond G.
, Lardo, Carmela
, Ibata, Rodrigo A.
, Hill, Vanessa
, Kordopatis, Georges
, Caffau, Elisabetta
, Arentsen, Anke
, Mucciarelli, Alessio
, Sestito, Federico
, González Hernández, Jonay I.
, McConnachie, Alan W.
, Fabbro, Sébastien
in
639/33/34/863
/ 639/33/34/867
/ Barium
/ Carbon
/ chemical analysis
/ cluster analysis
/ dispersion
/ Ejecta
/ Fossils
/ Galactic clusters
/ Galaxies
/ Globular clusters
/ Humanities and Social Sciences
/ instrumentation
/ Iron
/ Iron content
/ Metal content
/ Metallicity
/ Milky Way
/ multidisciplinary
/ Science
/ Science (multidisciplinary)
/ Sciences of the Universe
/ Spectrum analysis
/ Star & galaxy formation
/ Stars
/ Stars & galaxies
/ Stellar systems
/ stream
/ temperature effect
2022
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A stellar stream remnant of a globular cluster below the metallicity floor
Journal Article
A stellar stream remnant of a globular cluster below the metallicity floor
2022
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Overview
Stellar ejecta gradually enrich the gas out of which subsequent stars form, making the least chemically enriched stellar systems direct fossils of structures formed in the early Universe
1
. Although a few hundred stars with metal content below 1,000th of the solar iron content are known in the Galaxy
2
–
4
, none of them inhabit globular clusters, some of the oldest known stellar structures. These show metal content of at least approximately 0.2% of the solar metallicity
(
[
Fe
/
H
]
≳
−
2.7
)
. This metallicity floor appears universal
5
,
6
, and it has been proposed that protogalaxies that merged into the galaxies we observe today were simply not massive enough to form clusters that survived to the present day
7
. Here we report observations of a stellar stream, C-19, whose metallicity is less than 0.05% of the solar metallicity
(
[
F
e
/
H
]
=
−
3.38
±
0.06
(
s
t
a
t
i
s
t
i
c
a
l
)
±
0.20
(
s
y
s
t
e
m
a
t
i
c
)
)
. The low metallicity dispersion and the chemical abundances of the C-19 stars show that this stream is the tidal remnant of the most metal-poor globular cluster ever discovered, and is significantly below the purported metallicity floor: clusters with significantly lower metallicities than observed today existed in the past and contributed their stars to the Milky Way halo.
Observations of a stellar stream below the metallicity floor for a disrupted globular cluster are described.
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