The first spectral line surveys searching for signals from the Dark Ages
arXiv:1003.2935 · doi:10.1051/0004-6361/200913395
Abstract
Our aim is to observationally investigate the cosmic Dark Ages in order to constrain star and structure formation models, as well as the chemical evolution in the early Universe. Spectral lines from atoms and molecules in primordial perturbations at high redshifts can give information about the conditions in the early universe before and during the formation of the first stars in addition to the epoch of reionisation. The lines may arise from moving primordial perturbations before the formation of the first stars (resonant scattering lines), or could be thermal absorption or emission lines at lower redshifts. The difficulties in these searches are that the source redshift and evolutionary state, as well as molecular species and transition are unknown, which implies that an observed line can fall within a wide range of frequencies. The lines are also expected to be very weak. Observations from space have the advantages of stability and the lack of atmospheric features which is important in such observations. We have therefore, as a first step in our searches, used the Odin satellite to perform two sets of spectral line surveys towards several positions. The first survey covered the band 547-578 GHz towards two positions, and the second one covered the bands 542.0-547.5 GHz and 486.5-492.0 GHz towards six positions selected to test different sizes of the primordial clouds. Two deep searches centred at 543.250 and 543.100 GHz with 1 GHz bandwidth were also performed towards one position. The two lowest rotational transitions of H2 will be redshifted to these frequencies from z~20-30, which is the predicted epoch of the first star formation. No lines are detected at an rms level of 14-90 and 5-35 mK for the two surveys, respectively, and 2-7 mK in the deep searches with a channel spacing of 1-16 MHz. The broad bandwidth covered allows a wide range of redshifts to be explored for a number of atomic and molecular species and transitions. From the theoretical side, our sensitivity analysis show that the largest possible amplitudes of the resonant lines are about 1 mK at frequencies <200 GHz, and a few micro K around 500-600 GHz, assuming optically thick lines and no beam-dilution. However, if existing, thermal absorption lines have the potential to be orders of magnitude stronger than the resonant lines. We make a simple estimation of the sizes and masses of the primordial perturbations at their turn-around epochs, which previously has been identified as the most favourable epoch for a detection. This work may be considered as an important pilot study for our forthcoming observations with the Herschel Space Observatory.
15 pages, 9 figures, 3 on-line pages. Accepted for publication in Astronomy & Astrophysics 8 March 2010.
References in corpus (35)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- The Supernova -- Gamma-Ray Burst Connection
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- A glimpse of the end of the dark ages: the gamma-ray burst of 23 April 2009 at redshift 8.3
- Primordial Nucleosynthesis in the Precision Cosmology Era
- A primer on hierarchical galaxy formation: the semi-analytical approach
- GRB 090423 at a redshift of z~8.1
- The formation of the first stars and galaxies
- Uncertainties in H2 and HD Chemistry and Cooling and their Role in Early Structure Formation
- Resolving the Formation of Protogalaxies. III. Feedback from the First Stars
- The First Galaxies: Assembly, Cooling and the Onset of Turbulence
- The First Positive Detection of Molecular Gas in a GRB Host Galaxy
- Hubble Space Telescope Weak-lensing Study of the Galaxy Cluster XMMU J2235.3-2557 at z=1.4: A Surprisingly Massive Galaxy Cluster when the Universe is One-third of its Current Age
- Lines in the Cosmic Microwave Background Spectrum from the Epoch of Cosmological Hydrogen Recombination
- The Chemistry of Population III Supernova Ejecta: I - Formation of Molecules in the Early Universe
- Lines in the cosmic microwave background spectrum from the epoch of cosmological helium recombination
- Cosmological hydrogen recombination: populations of the high level sub-states
- A spectral line survey of Orion KL in the bands 486-492 and 541-577 GHz with the Odin satellite II. Data analysis
- Free-bound emission from cosmological hydrogen recombination
- Effects of primordial chemistry on the cosmic microwave background
- On the minimum mass of reionization sources
- Infall caustics in dark matter halos?
- Primordial magnetic fields and formation of molecular hydrogen
- Primordial massive supernovae as the first molecular factories in the early universe
- Fast LiH destruction in reaction with H: quantum calculations and astrophysical consequences
- Inhomogeneous Big Bang Nucleosynthesis Revisited
- A spectral line survey of Orion KL in the bands 486-492 and 541-577 GHz with the Odin satellite I. The observational data
- Chemistry of heavy elements in the Dark Ages
- Molecular fluorine chemistry in the early Universe
- Water and ammonia abundances in S140 with the Odin satellite
- Spectral Spatial Fluctuations of CMBR: Strategy and Concept of the Experiment
- Large Scale Structure traced by Molecular Gas at High Redshift
- Observations of the Gas Reservoir around a Star Forming Galaxy in the Early Universe
- Hydrogen 2p--2s transition: signals from the epochs of recombination and reionization
- Open questions in the study of population III star formation
Cited by in corpus (9)
- The Dawn of Chemistry
- X-ray absorption evolution in Gamma-Ray Bursts: intergalactic medium or evolutionary signature of their host galaxies?
- Ion chemistry in the early universe: revisiting the role of HeH+ with new quantum calculations
- On the relative abundance of LiH and LiH+ molecules in the early universe: new results from quantum reactions
- Hydrogen Molecules in the Dark Ages Halos: Thermal Emission vs. Resonant Scattering
- The first molecules in the intergalactic medium and halos of the Dark Ages and Cosmic Dawn
- Thermal and Resonant Emission of Dark Ages Halos in the Rotational Lines of HeH
- Herschel and Odin observations of H2O, CO, CH, CH+, and NII in the barred spiral galaxy NGC 1365. Bar-induced activity in the outer and inner circumnuclear tori
- Distortion of the CMB spectrum by the first molecules of the Dark Ages