6 research outputs found

    Cosmological CPT Violation and CMB Polarization Measurements

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    In this paper we study the possibility of testing Charge-Parity-Time Reversal (CPT) symmetry with cosmic microwave background (CMB) experiments. We consider two kinds of Chern-Simons (CS) term, electromagnetic CS term and gravitational CS term, and study their effects on the CMB polarization power spectra in detail. By combining current CMB polarization measurements, the seven-year WMAP, BOOMERanG 2003 and BICEP observations, we obtain a tight constraint on the rotation angle Δα=−2.28±1.02\Delta\alpha=-2.28\pm1.02 deg (1 σ1\,\sigma), indicating a 2.2 σ2.2\,\sigma detection of the CPT violation. Here, we particularly take the systematic errors of CMB measurements into account. After adding the QUaD polarization data, the constraint becomes −1.34<Δα<0.82-1.34<\Delta\alpha<0.82 deg at 95% confidence level. When comparing with the effect of electromagnetic CS term, the gravitational CS term could only generate TB and EB power spectra with much smaller amplitude. Therefore, the induced parameter Ï”\epsilon can not be constrained from the current polarization data. Furthermore, we study the capabilities of future CMB measurements, Planck and CMBPol, on the constraints of Δα\Delta\alpha and Ï”\epsilon. We find that the constraint of Δα\Delta\alpha can be significantly improved by a factor of 15. Therefore, if this rotation angle effect can not be taken into account properly, the constraints of cosmological parameters will be biased obviously. For the gravitational CS term, the future Planck data still can not constrain Ï”\epsilon very well, if the primordial tensor perturbations are small, r<0.1r <0.1. We need the more accurate CMBPol experiment to give better constraint on Ï”\epsilon.Comment: 11 pages, 5 figures, 4 tables, Accepted for publication in JCA

    Testing the Lorentz and CPT Symmetry with CMB polarizations and a non-relativistic Maxwell Theory

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    We present a model for a system involving a photon gauge field and a scalar field at quantum criticality in the frame of a Lifthitz-type non-relativistic Maxwell theory. We will show this model gives rise to Lorentz and CPT violation which leads to a frequency-dependent rotation of polarization plane of radiations, and so leaves potential signals on the cosmic microwave background temperature and polarization anisotropies.Comment: 7 pages, 2 figures, accepted on JCAP, a few references adde

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