Nearly all the sky is covered by Lyman-α emission around high-redshift galaxies. (11th October 2018)
- Record Type:
- Journal Article
- Title:
- Nearly all the sky is covered by Lyman-α emission around high-redshift galaxies. (11th October 2018)
- Main Title:
- Nearly all the sky is covered by Lyman-α emission around high-redshift galaxies
- Authors:
- Wisotzki, L.
Bacon, R.
Brinchmann, J.
Cantalupo, S.
Richter, P.
Schaye, J.
Schmidt, K.
Urrutia, T.
Weilbacher, P.
Akhlaghi, M.
Bouché, N.
Contini, T.
Guiderdoni, B.
Herenz, E.
Inami, H.
Kerutt, J.
Leclercq, F.
Marino, R.
Maseda, M.
Monreal-Ibero, A.
Nanayakkara, T.
Richard, J.
Saust, R.
Steinmetz, M.
Wendt, M. - Abstract:
- Abstract Galaxies are surrounded by large reservoirs of gas, mostly hydrogen, that are fed by inflows from the intergalactic medium and by outflows from galactic winds. Absorption-line measurements along the lines of sight to bright and rare background quasars indicate that this circumgalactic medium extends far beyond the starlight seen in galaxies, but very little is known about its spatial distribution. The Lyman-α transition of atomic hydrogen at a wavelength of 121.6 nanometres is an important tracer of warm (about 104 kelvin) gas in and around galaxies, especially at cosmological redshifts greater than about 1.6 at which the spectral line becomes observable from the ground. Tracing cosmic hydrogen through its Lyman-α emission has been a long-standing goal of observational astrophysics1–3, but the extremely low surface brightness of the spatially extended emission is a formidable obstacle. A new window into circumgalactic environments was recently opened by the discovery of ubiquitous extended Lyman-α emission from hydrogen around high-redshift galaxies4, 5 . Such measurements were previously limited to especially favourable systems6–8 or to the use of massive statistical averaging9, 10 because of the faintness of this emission. Here we report observations of low-surface-brightness Lyman-α emission surrounding faint galaxies at redshifts between 3 and 6. We find that the projected sky coverage approaches 100 per cent. The corresponding rate of incidence (the mean numberAbstract Galaxies are surrounded by large reservoirs of gas, mostly hydrogen, that are fed by inflows from the intergalactic medium and by outflows from galactic winds. Absorption-line measurements along the lines of sight to bright and rare background quasars indicate that this circumgalactic medium extends far beyond the starlight seen in galaxies, but very little is known about its spatial distribution. The Lyman-α transition of atomic hydrogen at a wavelength of 121.6 nanometres is an important tracer of warm (about 104 kelvin) gas in and around galaxies, especially at cosmological redshifts greater than about 1.6 at which the spectral line becomes observable from the ground. Tracing cosmic hydrogen through its Lyman-α emission has been a long-standing goal of observational astrophysics1–3, but the extremely low surface brightness of the spatially extended emission is a formidable obstacle. A new window into circumgalactic environments was recently opened by the discovery of ubiquitous extended Lyman-α emission from hydrogen around high-redshift galaxies4, 5 . Such measurements were previously limited to especially favourable systems6–8 or to the use of massive statistical averaging9, 10 because of the faintness of this emission. Here we report observations of low-surface-brightness Lyman-α emission surrounding faint galaxies at redshifts between 3 and 6. We find that the projected sky coverage approaches 100 per cent. The corresponding rate of incidence (the mean number of Lyman-α emitters penetrated by any arbitrary line of sight) is well above unity and similar to the incidence rate of high-column-density absorbers frequently detected in the spectra of distant quasars11–14 . This similarity suggests that most circumgalactic atomic hydrogen at these redshifts has now been detected in emission. Lyman-α emission from atomic hydrogen shows the location of warm gas and is ubiquitous around galaxies between redshifts of 3 and 6, thereby covering nearly all the sky. … (more)
- Is Part Of:
- Nature. Volume 562:Number 7726(2018)
- Journal:
- Nature
- Issue:
- Volume 562:Number 7726(2018)
- Issue Display:
- Volume 562, Issue 7726 (2018)
- Year:
- 2018
- Volume:
- 562
- Issue:
- 7726
- Issue Sort Value:
- 2018-0562-7726-0000
- Page Start:
- 229
- Page End:
- 232
- Publication Date:
- 2018-10-11
- Subjects:
- Science -- Periodicals
505 - Journal URLs:
- http://www.nature.com/nature/ ↗
http://www.nature.com/ ↗ - DOI:
- 10.1038/s41586-018-0564-6 ↗
- Languages:
- English
- ISSNs:
- 0028-0836
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 6045.000000
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