Science-advisor
REGISTER info/FAQ
Login
username
password
     
forgot password?
register here
 
Research articles
  search articles
  reviews guidelines
  reviews
  articles index
My Pages
my alerts
  my messages
  my reviews
  my favorites
 
 
Stat
Members: 3669
Articles: 2'599'751
Articles rated: 2609

16 March 2025
 
  » arxiv » astro-ph/0112412

 Article overview



Faraday Rotation Effect of Intracluster Magnetic Field on Cosmic Microwave Background Polarization
Masahiro Takada ; Hiroshi Ohno ; Naoshi Sugiyama ;
Date 18 Dec 2001
Subject astro-ph
Affiliation1,2), Hiroshi Ohno and Naoshi Sugiyama ( NAO, Japan, Univ. of Pennsylvania, Univ. of Tokyo
AbstractThe observed magnetic field of microgauss strength in clusters of galaxies should induce the Faraday rotation effect on the linearly polarized cosmic microwave background (CMB) radiation when the CMB radiation propagates through a cluster at low redshift. Employing the Press-Schechter prescription for the cluster abundance under the cold dark matter (CDM) scenario and a plausible isothermal $eta$-model for the gas distribution, we compute angular power spectra of the CMB polarization fields including the Faraday rotation mixing effect under the simple assumption of uniform magnetic field configuration across a cluster. As a result, we find that a parity-odd B-type polarization pattern is statistically generated on the observed sky, even when the primary polarization only contains the parity-even E-mode component, such as in the case of pure scalar perturbations. The generated B-type polarization has a peak with amplitude of $sim0.1 mu{ m K}(B_0/0.1 mu{ m G})( u_0/10 { m GHz})^{-2}$ at angular scales of $lapprox 1000$ for the currently favored adiabatic $Lambda$CDM model. This result also implies that, if the magnetic field has a $0.5 mu{ m G}$ strength and we observe at lower frequencies such as $ u_0simlt 5 { m GHz}$, the secondary signal due to the Faraday rotation effect could be comparable to the magnitude of the primary polarization. The frequency dependence of the Faraday rotation can be then used to discriminate the effect from primary and other secondary signals on the CMB polarizations. Our results therefore offer a new empirical opportunity to measure or constrain the intracluster magnetic field in the average sense.
Source arXiv, astro-ph/0112412
Services Forum | Review | PDF | Favorites   
 
Visitor rating: did you like this article? no 1   2   3   4   5   yes

No review found.
 Did you like this article?

This article or document is ...
important:
of broad interest:
readable:
new:
correct:
Global appreciation:

  Note: answers to reviews or questions about the article must be posted in the forum section.
Authors are not allowed to review their own article. They can use the forum section.






ScienXe.org
» my Online CV
» Free

home  |  contact  |  terms of use  |  sitemap
Copyright © 2005-2025 - Scimetrica