Polarised foreground removal at low radio frequencies using rotation measure synthesis: uncovering the signature of hydrogen reionisation
arXiv:1011.2321 · doi:10.1111/j.1365-2966.2011.19509.x
Abstract
Measurement of redshifted 21-cm emission from neutral hydrogen promises to be the most effective method for studying the reionisation history of hydrogen and, indirectly, the first galaxies. These studies will be limited not by raw sensitivity to the signal, but rather, by bright foreground radiation from Galactic and extragalactic radio sources and the Galactic continuum. In addition, leakage due to gain errors and non-ideal feeds conspire to further contaminate low-frequency radio obsevations. This leakage leads to a portion of the complex linear polarisation signal finding its way into Stokes I, and inhibits the detection of the non-polarised cosmological signal from the epoch of reionisation. In this work, we show that rotation measure synthesis can be used to recover the signature of cosmic hydrogen reionisation in the presence of contamination by polarised foregrounds. To achieve this, we apply the rotation measure synthesis technique to the Stokes I component of a synthetic data cube containing Galactic foreground emission, the effect of instrumental polarisation leakage, and redshifted 21-cm emission by neutral hydrogen from the epoch of reionisation. This produces an effective Stokes I Faraday dispersion function for each line of sight, from which instrumental polarisation leakage can be fitted and subtracted. Our results show that it is possible to recover the signature of reionisation in its late stages (z ~ 7) by way of the 21-cm power spectrum, as well as through tomographic imaging of ionised cavities in the intergalactic medium.
22 pages including 11 figures. Minor revisions following referee's report. MNRAS, in press
References in corpus (11)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Efficient Simulations of Early Structure Formation and Reionization
- Foreground simulations for the LOFAR - Epoch of Reionization Experiment
- Evolution of the Intergalactic Opacity: Implications for the Ionizing Background, Cosmic Star Formation, and Quasar Activity
- Real-Time Calibration of the Murchison Widefield Array
- On using visibility correlations to probe the HI distribution from the dark ages to the present epoch I: Formalism and the expected signal
- Realistic Simulations of the Galactic Polarized Foreground: Consequences for 21-cm Reionization Detection Experiments
- Foregrounds for observations of the cosmological 21 cm line: II. Westerbork observations of the fields around 3C196 and the North Celestial Pole
- Will point sources spoil 21 cm tomography?
- The correlation between the distribution of galaxies and 21cm emission at high redshifts
- The Race Between Stars and Quasars in Reionizing Cosmic Hydrogen
Cited by in corpus (35)
- Reionization and the Cosmic Dawn with the Square Kilometre Array
- A Per-Baseline, Delay-Spectrum Technique for Accessing the 21cm Cosmic Reionization Signature
- Science with the Murchison Widefield Array
- Upper limits on the 21-cm Epoch of Reionization power spectrum from one night with LOFAR
- Calibrating High-Precision Faraday Rotation Measurements for LOFAR and the Next Generation of Low-Frequency Radio Telescopes
- First Limits on the 21 cm Power Spectrum during the Epoch of X-ray heating
- How well can we measure and understand foregrounds with 21 cm experiments?
- A 189 MHz, 2400 square degree polarization survey with the Murchison Widefield Array 32-element prototype
- Initial LOFAR observations of Epoch of Reionization windows: II. Diffuse polarized emission in the ELAIS-N1 field
- Low frequency observations of linearly polarized structures in the interstellar medium near the south Galactic pole
- The Effects of Polarized Foregrounds on 21cm Epoch of Reionization Power Spectrum Measurements
- Modeling the neutral hydrogen distribution in the post-reionization Universe: intensity mapping
- Parametrising Epoch of Reionization foregrounds: A deep survey of low-frequency point-source spectra with the MWA
- The challenges of low-frequency radio polarimetry: lessons from the Murchison Widefield Array
- Spherical Harmonic Analyses of Intensity Mapping Power Spectra
- Imaging neutral hydrogen on large-scales during the Epoch of Reionization with LOFAR
- Fuzzy Dark Matter at Cosmic Dawn: New 21-cm Constraints
- Constraining Polarized Foregrounds for EoR Experiments I: 2D Power Spectra from the PAPER-32 Imaging Array
- Contamination of the Epoch of Reionization power spectrum in the presence of foregrounds
- New Limits on Polarized Power Spectra at 126 and 164 MHz: Relevance to Epoch of Reionization Measurements
- Constraining Polarized Foregrounds for EOR Experiments II: Polarization Leakage Simulations in the Avoidance Scheme
- Foreground modelling via Gaussian process regression: an application to HERA data
- Simulations of Galactic polarized synchrotron emission for Epoch of Reionization observations
- The HERA-19 Commissioning Array: Direction Dependent Effects
- A Bayesian analysis of redshifted 21-cm HI signal and foregrounds: Simulations for LOFAR
- Probing Compensated Isocurvature with the 21-cm Signal during Cosmic Dawn
- Galactic Faraday rotation effect on polarization of 21 cm lines from the epoch of reionization
- Probing delayed-end reionization histories with the 21cm-LAE cross-power spectrum
- Post-reionization HI 21-cm signal: A probe of negative cosmological constant
- Constraining Neutrino mass using the large scale HI distribution in the Post-reionization epoch
- 21 cm power spectrum in interacting cubic Galileon model
- Probing Quintessence using BAO imprint on the cross-correlation of weak lensing and post-reionization HI 21 cm signal
- A semi-cosmographic approach to study cosmological evolution in phase space
- Impact of astrophysical effects on the dark matter mass constraint with 21cm intensity mapping
- Detecting the signature of helium reionization through 3HeII 3.46cm line-intensity mapping