BAORadio: A digital pipeline for radio interferometry and 21 cm mapping of large scale structures
arXiv:1209.3266 · doi:10.1016/j.crhy.2011.11.003
Abstract
3D mapping of matter distribution in the universe through the 21 cm radio emission of atomic hydrogen HI is a complementary approach to optical surveys for the study of the Large Scale Structures, in particular for measuring the BAO (Baryon Acoustic Oscillation) scale up to redshifts z < 3, and therefore constraining dark energy parameters. We propose a novel method to map the HI mass distribution in three dimensions in radio, without detecting or identifying individual compact sources. This method would require an instrument with a large instantaneous bandwidth (> 100 MHz) and high sensitivity, while a rather modest angular resolution (~ 10 arcmin) should be sufficient. These requirements can be met by a dense interferometric array or a phased array (FPA) in the focal plane of a large primary reflector, representing a total collecting area of a few thousand square meters with few hundred simultaneous beams covering a 20 to 100 square degrees field of view. We describe the development and qualification of an electronic and data processing system for digital radio interferometry and beam forming suitable for such instruments with several hundred receiver elements.
11 pages, 5 figures
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- Dynamics of dark energy
- Report of the Dark Energy Task Force
- Baryon Acoustic Oscillation Intensity Mapping as a Test of Dark Energy
- The Physics and Early History of the Intergalactic Medium
- The Hubble Sphere Hydrogen Survey
- Digital Instrumentation for the Radio Astronomy Community
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- The Importance of Wide-field Foreground Removal for 21 cm Cosmology: A Demonstration With Early MWA Epoch of Reionization Observations
- The Impact of Foregrounds on Redshift Space Distortion Measurements With the Highly-Redshifted 21 cm Line
- The foreground wedge and 21 cm BAO surveys
- Spherical Harmonic Analyses of Intensity Mapping Power Spectra
- Method for Direct Measurement of Cosmic Acceleration by 21-cm Absorption Systems
- Gaussian Process Regression for foreground removal in HI intensity mapping experiments
- Sky reconstruction from transit visibilities: PAON-4 and Tianlai Dish Array
- Combining galaxy and 21cm surveys
- Bayesian semi-blind component separation for foreground removal in interferometric 21-cm observations
- Gravitational Lensing of Cosmological 21cm Emission
- Weak lensing with 21cm intensity mapping at
- Design, operation and performance of the PAON4 prototype transit interferometer
- On sky characterization of the BAORadio wide band digital backend: Search for HI emission in Abell85, Abell1205 and Abell2440 galaxy clusters