We study the evolution of the first stars in the universe (Population III) from the early pre Main Sequence (MS) until the end of helium burning in the presence of WIMP dark matter annihilation inside the stellar structure. The two different mechanisms that can provide this energy source are the contemporary contraction of baryons and dark matter, and the capture of WIMPs by scattering off the gas with subsequent accumulation inside the star. We find that the first mechanism can generate an equilibrium phase, previously known as a dark star, which is transient and present in the very early stages of pre MS evolution. The mechanism of scattering and capture acts later, and can support the star virtually forever, depending on environmental ch...
The formation and evolution of low-mass stars within dense halos of dark matter (DM) leads to evolut...
ManuscriptA new line of research on Dark Stars is reviewed, which suggests that the first stars to e...
The first phase of stellar evolution in the history of the Universe may be Dark Stars (DS), powered ...
We study the effects of weakly interacting massive particles (WIMPs) dark matter (DM) on the collaps...
If Dark Matter (DM) is composed by Weakly Interacting Massive Particles, its annihilation in the hal...
If weakly interactingmassive particles (WIMPs) constitute the bulk of darkmatter (DM), energy from t...
Assuming that Dark Matter is dominated by WIMPs, it accretes by gravitational attraction and scatter...
We study the effects of WIMP dark matter (DM) annihilations on the thermal and chemical evolution of...
We include an energy term based on Dark Matter (DM) self-annihilation during the cooling and subsequ...
ManuscriptDark matter (DM) in protostellar halos can dramatically alter the current theoretical fram...
Journal ArticleA mechanism is identified whereby dark matter (DM) in protostellar halos dramatically...
We present the first three-dimensional simulations to include the effects of dark matter annihilatio...
International audienceWe study the impact of the capture and annihilation of weakly interacting mass...
We have proposed that the first phase of stellar evolution in the history of the Universe may be dar...
International audienceDark matter particles with properties identical to those of dark matter candid...
The formation and evolution of low-mass stars within dense halos of dark matter (DM) leads to evolut...
ManuscriptA new line of research on Dark Stars is reviewed, which suggests that the first stars to e...
The first phase of stellar evolution in the history of the Universe may be Dark Stars (DS), powered ...
We study the effects of weakly interacting massive particles (WIMPs) dark matter (DM) on the collaps...
If Dark Matter (DM) is composed by Weakly Interacting Massive Particles, its annihilation in the hal...
If weakly interactingmassive particles (WIMPs) constitute the bulk of darkmatter (DM), energy from t...
Assuming that Dark Matter is dominated by WIMPs, it accretes by gravitational attraction and scatter...
We study the effects of WIMP dark matter (DM) annihilations on the thermal and chemical evolution of...
We include an energy term based on Dark Matter (DM) self-annihilation during the cooling and subsequ...
ManuscriptDark matter (DM) in protostellar halos can dramatically alter the current theoretical fram...
Journal ArticleA mechanism is identified whereby dark matter (DM) in protostellar halos dramatically...
We present the first three-dimensional simulations to include the effects of dark matter annihilatio...
International audienceWe study the impact of the capture and annihilation of weakly interacting mass...
We have proposed that the first phase of stellar evolution in the history of the Universe may be dar...
International audienceDark matter particles with properties identical to those of dark matter candid...
The formation and evolution of low-mass stars within dense halos of dark matter (DM) leads to evolut...
ManuscriptA new line of research on Dark Stars is reviewed, which suggests that the first stars to e...
The first phase of stellar evolution in the history of the Universe may be Dark Stars (DS), powered ...