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Measuring energy dependent polarization in soft γ-rays using Compton scattering in PoGOLite

Authors :
Axelsson, M.
Engdegård, O.
Ryde, F.
Larsson, S.
Pearce, M.
Hjalmarsdotter, L.
Kiss, M.
Bettolo, C. Marini
Arimoto, M.
Björnsson, C.-I.
Carlson, P.
Fukazawa, Y.
Kamae, T.
Kanai, Y.
Kataoka, J.
Kawai, N.
Klamra, W.
Madejski, G.
Mizuno, T.
Ng, J.
Source :
Astroparticle Physics. Nov2007, Vol. 28 Issue 3, p327-337. 11p.
Publication Year :
2007

Abstract

Abstract: Linear polarization in X- and γ-rays is an important diagnostic of many astrophysical sources, foremost giving information about their geometry, magnetic fields, and radiation mechanisms. However, very few X-ray polarization measurements have been made, and then only mono-energetic detections, whilst several objects are assumed to have energy dependent polarization signatures. In this paper, we investigate whether detection of energy dependent polarization from cosmic sources is possible using the Compton technique, in particular with the proposed PoGOLite balloon-experiment, in the 25–100keV range. We use Geant4 simulations of a PoGOLite model and input photon spectra based on Cygnus X-1 and accreting magnetic pulsars (100mCrab). Effective observing times of 6 and 35h were simulated, corresponding to a standard and a long duration flight, respectively. Both smooth and sharp energy variations of the polarization are investigated and compared to constant polarization signals using chi-square statistics. We can reject constant polarization, with energy, for the Cygnus X-1 spectrum (in the hard state), if the reflected component is assumed to be completely polarized, whereas the distinction cannot be made for weaker polarization. For the accreting pulsar, constant polarization can be rejected in the case of polarization in a narrow energy band with at least 50% polarization, and similarly for a negative step distribution from 30% to 0% polarization. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
09276505
Volume :
28
Issue :
3
Database :
Academic Search Index
Journal :
Astroparticle Physics
Publication Type :
Academic Journal
Accession number :
27050527
Full Text :
https://doi.org/10.1016/j.astropartphys.2007.06.006