We show that the Cosmic Microwave Background (CMB) polarization data gathered by the BOOMERanG 2003 flight and WMAP provide an opportunity to investigate in-vacuo birefringence, of a type expected in some quantum pictures of space-time, with a sensitivity that extends even beyond the desired Planck-scale energy. In order to render this constraint more transparent we rely on a well studied phenomenological model of quantum-gravity-induced birefringence, in which one easily establishes that effects introduced at the Planck scale would amount to values of a dimensionless parameter, denoted by ξ, with respect to the Planck energy which are roughly of order 1. By combining BOOMERanG and WMAP data we estimate ξ -0.1100.075 at the 68% c.l. Moreover, we forecast on the sensitivity to ξ achievable by future CMB polarization experiments (PLANCK, Spider, EPIC), which, in the absence of systematics, will be at the 1-σ confidence of 8.5 × 10 -4 (PLANCK), 6.1 × 10 -3 (Spider), and 1.0 × 10 -5 (EPIC) respectively. The cosmic variance-limited sensitivity from CMB is 6.1 × 10 -6. © 2009 IOP Publishing Ltd and SISSA.
A constraint on Planck-scale modifications to electrodynamics with CMB polarization data / Gubitosi, G.; Pagano, L.; Amelino Camelia, G.; Melchiorri, A.; Cooray, A.. - In: JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS. - ISSN 1475-7516. - 2009:8(2009), pp. 021-021. [10.1088/1475-7516/2009/08/021]
A constraint on Planck-scale modifications to electrodynamics with CMB polarization data
Gubitosi G.;Amelino Camelia G.;
2009
Abstract
We show that the Cosmic Microwave Background (CMB) polarization data gathered by the BOOMERanG 2003 flight and WMAP provide an opportunity to investigate in-vacuo birefringence, of a type expected in some quantum pictures of space-time, with a sensitivity that extends even beyond the desired Planck-scale energy. In order to render this constraint more transparent we rely on a well studied phenomenological model of quantum-gravity-induced birefringence, in which one easily establishes that effects introduced at the Planck scale would amount to values of a dimensionless parameter, denoted by ξ, with respect to the Planck energy which are roughly of order 1. By combining BOOMERanG and WMAP data we estimate ξ -0.1100.075 at the 68% c.l. Moreover, we forecast on the sensitivity to ξ achievable by future CMB polarization experiments (PLANCK, Spider, EPIC), which, in the absence of systematics, will be at the 1-σ confidence of 8.5 × 10 -4 (PLANCK), 6.1 × 10 -3 (Spider), and 1.0 × 10 -5 (EPIC) respectively. The cosmic variance-limited sensitivity from CMB is 6.1 × 10 -6. © 2009 IOP Publishing Ltd and SISSA.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.