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A&A 476, L37-L40 (2007)
DOI: 10.1051/0004-6361:20078656
Letter
Measuring the dark matter velocity anisotropy in galaxy clusters
S. H. Hansen1 and R. Piffaretti21 Dark Cosmology Centre, Niels Bohr Institute, University of Copenhagen, Juliane Maries Vej 30, Copenhagen, Denmark
e-mail: hansen@dark-cosmology.dk
2 SISSA/ISAS, via Beirut 4, 34014 Trieste, Italy
(Received 11 September 2007 / Accepted 31 October 2007)
Abstract
Aims.The Universe contains approximately 6 times more dark matter
than normal baryonic matter, and directly observed
fundamental difference between dark matter and baryons would both
be significant for our understanding of dark matter
structures and provide us with information about the basic
characteristics of the dark matter particle.
We discuss one
distinctive feature of dark matter structures in equilibrium, namely the
property that a local dark matter temperature may depend on
direction. This is in stark contrast to
baryonic gases.
Methods.We used X-ray observations of two nearby, relaxed
galaxy clusters, under the assumptions of hydrostatic equilibrium
and identical dark matter and gas temperatures in the outer cluster region,
to measure this dark matter temperature anisotropy
, with non-parametric Monte Carlo methods.
Results.We find
that
is greater than the value predicted for baryonic
gases,
= 0, at more than
confidence. The
observed value of the temperature anisotropy is in fair agreement with
the results of cosmological N-body simulations and shows that the
equilibration of the dark matter particles is not governed by local
point-like interactions in contrast to baryonic gases.
Key words: cosmology: dark matter -- galaxies: clusters: general -- galaxies: clusters: individual: A2052 -- galaxies: clusters: individual: Sersic 159-03
© ESO 2007
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