Experimental developments in neutrino telescopes are drastically improving their ability to constrain the annihilation cross-section of dark matter. In this paper, we employ an angular power spectrum analysis method to probe the galactic and extra-galactic dark matter signals. First we derive projections for a next generation of neutrino telescope that is inspired by KM3NeT. We emphasise that such analysis is much less sensitive to the choice of dark matter density profile. Remarkably, the projected sensitivity is improved by more than an order of magnitude with respect to the existing limits obtained by assuming the Burkert dark matter density profile describing the galactic halo. Second, we analyse minimal extensions to the Standard Model...
A sterile neutrino of similar to keV mass is a well-motivated dark matter candidate. Its decay gener...
Dark matter (DM) annihilations in the Galaxy may produce high-energy neutrinos, which can be detecte...
We explore the possibility of obtaining better constraints from future astronomical data by mean...
Experimental developments in neutrino telescopes are drastically improving their ability to constrai...
Experimental developments in neutrino telescopes are drastically improving their ability to constrai...
The hypothesis of two different components in the high-energy neutrino flux observed with IceCube ha...
The next generation of neutrino telescopes will feature unprecedented sensitivities in the detection...
Abstract: Neutrino telescopes are looking to detect neutrinos produced by the annihilation of weakly...
Direct detection dark matter experiments, lead by the CDMS collaboration, have placed increasingly s...
The nature of dark matter is one of the hottest topics in physics nowadays. Neutrino telescopes have...
We study the constraints which the next generation of radio telescopes could place on the mass and n...
International audienceSearches for dark matter (DM) have not provided any solid evidence for the exi...
Despite the incredible progress made in cosmology and particle physics in the last century, there ar...
In this thesis, several aspects of the dark sector are explored, using neutrinos and gamma-rays. Dwa...
A sterile neutrino of similar to keV mass is a well-motivated dark matter candidate. Its decay gener...
Dark matter (DM) annihilations in the Galaxy may produce high-energy neutrinos, which can be detecte...
We explore the possibility of obtaining better constraints from future astronomical data by mean...
Experimental developments in neutrino telescopes are drastically improving their ability to constrai...
Experimental developments in neutrino telescopes are drastically improving their ability to constrai...
The hypothesis of two different components in the high-energy neutrino flux observed with IceCube ha...
The next generation of neutrino telescopes will feature unprecedented sensitivities in the detection...
Abstract: Neutrino telescopes are looking to detect neutrinos produced by the annihilation of weakly...
Direct detection dark matter experiments, lead by the CDMS collaboration, have placed increasingly s...
The nature of dark matter is one of the hottest topics in physics nowadays. Neutrino telescopes have...
We study the constraints which the next generation of radio telescopes could place on the mass and n...
International audienceSearches for dark matter (DM) have not provided any solid evidence for the exi...
Despite the incredible progress made in cosmology and particle physics in the last century, there ar...
In this thesis, several aspects of the dark sector are explored, using neutrinos and gamma-rays. Dwa...
A sterile neutrino of similar to keV mass is a well-motivated dark matter candidate. Its decay gener...
Dark matter (DM) annihilations in the Galaxy may produce high-energy neutrinos, which can be detecte...
We explore the possibility of obtaining better constraints from future astronomical data by mean...