The annihilation or decay of Dark Matter (DM) particles could affect the thermal history of the universe and leave an observable signature in Cosmic Microwave Background (CMB) anisotropies. We update constraints on the annihilation rate of DM particles in the smooth cosmological background, using WMAP7 and recent small-scale CMB data. With a systematic analysis based on the Press-Schechter formalism, we also show that DM annihilation in halos at small redshift may explain entirely the reionization patterns observed in the CMB, under reasonable assumptions concerning the concentration and formation redshift of halos. We find that a mixed reionization model based on DM annihilation in halos as well as star formation at a redshift z~6.5 could ...
Anisotropies of the cosmic microwave background (CMB) have proven to be a very powerful tool to cons...
The injection of secondary particles produced by dark matter (DM) annihilation at redshift 100 z 100...
The injection of secondary particles produced by dark matter (DM) annihilation at redshift 100 z 100...
The annihilation or decay of Dark Matter (DM) particles could affect the thermal history of the univ...
International audienceThe annihilation or decay of Dark Matter (DM) particles could affect the therm...
International audienceThe annihilation or decay of Dark Matter (DM) particles could affect thetherma...
Abstract: The annihilation or decay of Dark Matter (DM) particles could affect the thermal history o...
Cosmic microwave background (CMB) constraints on dark matter annihilation are a uniquely powerful to...
International audienceIt is well known that annihilations in the homogeneous fluid of dark matter(DM...
International audienceIt is well known that annihilations in the homogeneous fluid of dark matter(DM...
The injection of secondary particles produced by dark matter (DM) annihilation around redshift simil...
The recombination history of the Universe provides a useful tool for constraining the annihilation o...
We compute the bounds on the dark matter (DM) annihilation cross section using the most recent Cosmi...
We compute the bounds on the dark matter (DM) annihilation cross section using the most recent Cosmi...
Anisotropies of the cosmic microwave background (CMB) have proven to be a very powerful tool to cons...
Anisotropies of the cosmic microwave background (CMB) have proven to be a very powerful tool to cons...
The injection of secondary particles produced by dark matter (DM) annihilation at redshift 100 z 100...
The injection of secondary particles produced by dark matter (DM) annihilation at redshift 100 z 100...
The annihilation or decay of Dark Matter (DM) particles could affect the thermal history of the univ...
International audienceThe annihilation or decay of Dark Matter (DM) particles could affect the therm...
International audienceThe annihilation or decay of Dark Matter (DM) particles could affect thetherma...
Abstract: The annihilation or decay of Dark Matter (DM) particles could affect the thermal history o...
Cosmic microwave background (CMB) constraints on dark matter annihilation are a uniquely powerful to...
International audienceIt is well known that annihilations in the homogeneous fluid of dark matter(DM...
International audienceIt is well known that annihilations in the homogeneous fluid of dark matter(DM...
The injection of secondary particles produced by dark matter (DM) annihilation around redshift simil...
The recombination history of the Universe provides a useful tool for constraining the annihilation o...
We compute the bounds on the dark matter (DM) annihilation cross section using the most recent Cosmi...
We compute the bounds on the dark matter (DM) annihilation cross section using the most recent Cosmi...
Anisotropies of the cosmic microwave background (CMB) have proven to be a very powerful tool to cons...
Anisotropies of the cosmic microwave background (CMB) have proven to be a very powerful tool to cons...
The injection of secondary particles produced by dark matter (DM) annihilation at redshift 100 z 100...
The injection of secondary particles produced by dark matter (DM) annihilation at redshift 100 z 100...