We present a detailed spectroscopic analysis of a galaxy at $z \simeq 4.88$ that is, by chance, magnified $\sim 30 \times$ by gravitational lensing. Only three sources at $z \gtrsim 5$ are known with such high magnification. This particular source has been shown to exhibit widespread, high equivalent width CIV $\lambda$ 1549 {\AA} emission, implying it is a unique example of a metal-poor galaxy with a hard radiation field, likely representing the galaxy population responsible for cosmic reionisation. Using UV nebular line ratio diagnostics, VLT/X-shooter observations rule out strong AGN activity, indicating a stellar origin of the hard radiation field instead. We present a new detection of [NeIII] $\lambda$ 3870 {\AA} and use the [NeIII]/[O...
International audienceRecent studies have revealed intense ultraviolet (UV) metal emission lines in ...
International audienceRecent studies have revealed intense ultraviolet (UV) metal emission lines in ...
International audienceRecent studies have revealed intense ultraviolet (UV) metal emission lines in ...
International audienceWe present a detailed spectroscopic analysis of a galaxy at z ≃ 4.88 that is, ...
International audienceWe present a detailed spectroscopic analysis of a galaxy at z ≃ 4.88 that is, ...
International audienceWe present a detailed spectroscopic analysis of a galaxy at z ≃ 4.88 that is, ...
We present a detailed spectroscopic analysis of a galaxy at z ≃ 4.88 that is, by chance, magnified ∼...
International audienceRecent observations have revealed the presence of strong CIII] emission (EW CI...
Recent observations have revealed the presence of strong C III] emission (EWC III] > 20 Å) in z &...
International audienceWe present Keck/MOSFIRE observations of UV metal emission lines in four bright...
International audienceWe present Keck/MOSFIRE observations of UV metal emission lines in four bright...
International audienceWe present Keck/MOSFIRE observations of UV metal emission lines in four bright...
The reionization of intergalactic hydrogen contains important clues to the history of cosmic structu...
Aims. Cosmic reionization is an important process occurring in the early epochs of the Universe. How...
Strong [O iii]λλ4959,5007 + Hβ emission appears to be typical in star-forming galaxies at z > 6.5...
International audienceRecent studies have revealed intense ultraviolet (UV) metal emission lines in ...
International audienceRecent studies have revealed intense ultraviolet (UV) metal emission lines in ...
International audienceRecent studies have revealed intense ultraviolet (UV) metal emission lines in ...
International audienceWe present a detailed spectroscopic analysis of a galaxy at z ≃ 4.88 that is, ...
International audienceWe present a detailed spectroscopic analysis of a galaxy at z ≃ 4.88 that is, ...
International audienceWe present a detailed spectroscopic analysis of a galaxy at z ≃ 4.88 that is, ...
We present a detailed spectroscopic analysis of a galaxy at z ≃ 4.88 that is, by chance, magnified ∼...
International audienceRecent observations have revealed the presence of strong CIII] emission (EW CI...
Recent observations have revealed the presence of strong C III] emission (EWC III] > 20 Å) in z &...
International audienceWe present Keck/MOSFIRE observations of UV metal emission lines in four bright...
International audienceWe present Keck/MOSFIRE observations of UV metal emission lines in four bright...
International audienceWe present Keck/MOSFIRE observations of UV metal emission lines in four bright...
The reionization of intergalactic hydrogen contains important clues to the history of cosmic structu...
Aims. Cosmic reionization is an important process occurring in the early epochs of the Universe. How...
Strong [O iii]λλ4959,5007 + Hβ emission appears to be typical in star-forming galaxies at z > 6.5...
International audienceRecent studies have revealed intense ultraviolet (UV) metal emission lines in ...
International audienceRecent studies have revealed intense ultraviolet (UV) metal emission lines in ...
International audienceRecent studies have revealed intense ultraviolet (UV) metal emission lines in ...