AbstractWe present new fast numerical simulations of cosmic microwave background and large scale structure in the case in which the cosmological dark matter is made entirely or partly made of mirror matter. We consider scalar adiabatic primordial perturbations at linear scales in a flat Universe. The speed of the simulations allows us for the first time to use Markov Chain Monte Carlo analyses to constrain the mirror parameters. A Universe with pure mirror matter can fit very well the observations, equivalently to the case of an admixture with cold dark matter. In both cases, the cosmological models estimate the presence of a consistent amount of mirror dark matter, 0.06≲Ωmirrorh2≲0.12
We use N-body simulations to show that high-redshift galaxy counts provide an interesting constraint...
AbstractMirror dark matter interacting with ordinary matter via photon-mirror photon kinetic mixing ...
Mirror matter is a promising self-collisional dark matter candidate. Here we study the evolution of ...
We present new fast numerical simulations of cosmic microwave background and large scale structure i...
AbstractWe present new fast numerical simulations of cosmic microwave background and large scale str...
In the mirror world hypothesis the mirror baryonic component emerges as a possible dark matter candi...
Mirror world, a parallel hidden sector with microphysics identical to ordinary particle physics, can...
One of the still viable candidates for the dark matter is the so-called mirror matter. Its cosmologi...
AbstractMirror world, a parallel hidden sector with microphysics identical to ordinary particle phys...
AbstractMirror dark matter provides a simple framework for which to explain the DAMA/LIBRA annual mo...
Today there is an insurmountable evidence that there is much more invisible matter in the universe t...
There are six main things which any non-baryonic dark matter theory should endeavour to explain: (1)...
Mirror matter is predicted to exist if parity is an unbroken symmetry of nature. Currently, there is...
There are compelling evidences of gravitational effects from dark matter in cosmology and astronomy....
Dark energy is interpreted as the leftover of mostly canceled vacuum energy due to the spontaneous m...
We use N-body simulations to show that high-redshift galaxy counts provide an interesting constraint...
AbstractMirror dark matter interacting with ordinary matter via photon-mirror photon kinetic mixing ...
Mirror matter is a promising self-collisional dark matter candidate. Here we study the evolution of ...
We present new fast numerical simulations of cosmic microwave background and large scale structure i...
AbstractWe present new fast numerical simulations of cosmic microwave background and large scale str...
In the mirror world hypothesis the mirror baryonic component emerges as a possible dark matter candi...
Mirror world, a parallel hidden sector with microphysics identical to ordinary particle physics, can...
One of the still viable candidates for the dark matter is the so-called mirror matter. Its cosmologi...
AbstractMirror world, a parallel hidden sector with microphysics identical to ordinary particle phys...
AbstractMirror dark matter provides a simple framework for which to explain the DAMA/LIBRA annual mo...
Today there is an insurmountable evidence that there is much more invisible matter in the universe t...
There are six main things which any non-baryonic dark matter theory should endeavour to explain: (1)...
Mirror matter is predicted to exist if parity is an unbroken symmetry of nature. Currently, there is...
There are compelling evidences of gravitational effects from dark matter in cosmology and astronomy....
Dark energy is interpreted as the leftover of mostly canceled vacuum energy due to the spontaneous m...
We use N-body simulations to show that high-redshift galaxy counts provide an interesting constraint...
AbstractMirror dark matter interacting with ordinary matter via photon-mirror photon kinetic mixing ...
Mirror matter is a promising self-collisional dark matter candidate. Here we study the evolution of ...