Deep 1.4-GHz observations of diffuse polarized emission
arXiv:astro-ph/0512286 · doi:10.1111/j.1365-2966.2005.09979.x
Abstract
Polarized diffuse emission observations at 1.4-GHz in a high Galactic latitude area of the northern Celestial hemisphere are presented. The 3.2 X 3.2 deg^2 field, centred at RA = 10h 58m, Dec = +42deg 18' (B1950), has Galactic coordinates l~172deg, b~+63deg and is located in the region selected as northern target of the BaR-SPOrt experiment. Observations have been performed with the Effelsberg 100-m telescope. We find that the angular power spectra of the E- and B-modes have slopes of beta_E = -1.79 +/- 0.13 and beta_B = -1.74 +/- 0.12, respectively. Because of the very high Galactic latitude and the smooth emission, a weak Faraday rotation action is expected, which allows both a fair extrapolation to Cosmic Microwave Background Polarization (CMBP) frequencies and an estimate of the contamination by Galactic synchrotron emission. We extrapolate the E-mode spectrum up to 32-GHz and confirm the possibility to safely detect the CMBP E-mode signal in the Ka band found in another low emission region (Carretti et al. 2005b). Extrapolated up to 90-GHz, the Galactic synchrotron B-mode looks to compete with the cosmic signal only for models with a tensor-to-scalar perturbation power ratio T/S < 0.001, which is even lower than the T/S value of 0.01 found to be accessible in the only other high Galactic latitude area investigated to date. This suggests that values as low as T/S = 0.01 might be accessed at high Galactic latitudes. Such low emission values can allow a significant red-shift of the best frequency to detect the CMBP B-mode, also reducing the contamination by Galactic dust, and opening interesting perspectives to investigate Inflation models.
8 pages, 8 figures, accepted for publication in MNRAS
References in corpus (23)
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Determination of Cosmological Parameters
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Foreground Emission
- Detection of Polarization in the Cosmic Microwave Background using DASI
- Calibrator Design for the COBE Far Infrared Absolute Spectrophotometer (FIRAS)
- Microwave Background Constraints on Cosmological Parameters
- Foregrounds and Forecasts for the Cosmic Microwave Background
- The Universe Was Reionized Twice
- Polarization Observations with the Cosmic Background Imager
- DASI Three-Year Cosmic Microwave Background Polarization Results
- A 1.4 GHz radio continuum and polarization survey at medium Galactic latitudes: II. First section
- A Determination of the Spectral Index of Galactic Synchrotron Emission in the 1-10 GHz range
- Detectability of Inflationary Gravitational Waves with Microwave Background Polarization
- First Detection of Polarization of the Submillimetre Diffuse Galactic Dust Emission by Archeops
- Constraining Inflation with Cosmic Microwave Background Polarization
- First measurements of the polarization of the cosmic microwave background radiation at small angular scales from CAPMAP
- Limits on the detectability of the CMB B-mode polarization imposed by foregrounds
- Temperature and polarization angular power spectra of Galactic dust radiation at 353 GHz as measured by Archeops
- Structure in the polarized Galactic synchrotron emission, in particular `depolarization canals'
- High Galactic latitude polarized emission at 1.4 GHz and implications for cosmic microwave background observations
- The power-law behaviours of angular spectra of polarized Galactic synchrotron
- Polarization observations in a low synchrotron emission field at 1.4 GHz
- A polarized synchrotron template for CMBP experiments after WMAP data
- Polarized Diffuse Emission at 2.3 GHz in a High Galactic Latitude Area
Cited by in corpus (6)
- A Measurement of the CMB <EE> Spectrum from the 2003 Flight of BOOMERANG
- Foregrounds for observations of the cosmological 21 cm line: I. First Westerbork measurements of Galactic emission at 150 MHz in a low latitude field
- The Parkes Galactic Meridian Survey (PGMS): observations and CMB polarization foreground analysis
- An angular power spectrum analysis of the DRAO 1.4 GHz polarization survey: implications for CMB observations
- 1.4 GHz polarimetric observations of the two fields imaged by the DASI experiment
- Growing Supermassive Black Holes by Chaotic Accretion