21 cm cosmology in the 21st century

Космология по линии 21 см в XXI веке
Jonathan R Pritchard, Abraham Loeb
2012-07-24

21 cm cosmologyatomic hydrogenfirst stars and galaxiesintensity mappingredshifted 21 cm line
Imaging the Universe during the first hundreds of millions of years remains one of the exciting challenges facing modern cosmology. Observations of the redshifted 21 cm line of atomic hydrogen offer the potential of opening a new window into this epoch. This will transform our understanding of the formation of the first stars and galaxies and of the thermal history of the Universe. A new generation of radio telescopes is being constructed for this purpose with the first results starting to trickle in. In this review, we detail the physics that governs the 21 cm signal and describe what might be learnt from upcoming observations. We also generalize our discussion to intensity mapping of other atomic and molecular lines.
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A new generation of radio telescopes is being constructed to measure the 21 cm signal, with initial results beginning to emerge.
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Redshifted 21 cm observations provide a new probe of the Universe during its first hundreds of millions of years.
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The 21 cm signal can reveal how the first stars and galaxies formed and constrain the early Universe’s thermal history.
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The discussion extends beyond hydrogen 21 cm measurements to intensity mapping of other atomic and molecular emission lines.
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The review describes the physical processes governing the 21 cm signal and the scientific information expected from forthcoming observations.

the redshifted 21 cm signal of atomic hydrogen from the early Universe

the governing physics and cosmological information content of the 21 cm signal, including implications for the formation of the first stars and galaxies and the thermal history of the Universe

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2012-07-24
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Jonathan R Pritchard
Abraham Loeb
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