We derive the spectra arising from non-relativistic dark matter annihilations or decays into intermediary particles with arbitrary spin, which subsequently produce neutrinos or photons via two-body decays. Our approach is model independent and predicts spectral features restricted to a kinematic box. The overall shape within that box is a polynomial determined by the polarization of the decaying particle. We illustrate our findings with two examples. First, with the neutrino spectra arising from dark matter annihilations into the massive Standard Model gauge bosons. Second, with the gamma-ray and neutrino spectra generated by dark matter annihilations into hypothetical massive spin-2 particles. Our results are in particular applicable to th...
Dark matter particles from the galactic halo can be gravitationally trapped in the solar core or in ...
We study fermionic dark matter in a non-supersymmetric extension of the standard model with a family...
Even if supersymmetric particles are found at the Large Hadron Collider (LHC), it will be difficult ...
Indirect detection of gamma rays, neutrinos and charged cosmic rays from dark matter annihilation sh...
We consider the possibility that the cosmological dark matter consists of particles very close in ma...
If dark matter is made of particles governed by weak-scale physics, they may annihilate or decay to ...
© 2017 Dr. Rebecca Kate LeaneThe fundamental nature of dark matter (DM) remains unknown. In this the...
We initiate the study of novel thermal dark matter (DM) scenarios where present-day annihilation of ...
34 pages, published as Chapter 26, pp. 521-546, in Particle Dark Matter: Observations, Models and Se...
We study the fluxes of neutrinos from annihilations of dark matter particles in the Sun and the Eart...
Version 4: addendum about the 2013 AMS positron data (version 5: just refinements and additions to f...
The existence of dark matter (DM) is supported by a large body of evidence on local and cosmological...
This thesis presents advancements in two of the three avenues for the detection of particle dark mat...
Although the existence of Dark Matter (DM) is supported by multiple unrelated evidences at different...
Many astronomical observations, including rotational curve measurements of stars and the analysis of...
Dark matter particles from the galactic halo can be gravitationally trapped in the solar core or in ...
We study fermionic dark matter in a non-supersymmetric extension of the standard model with a family...
Even if supersymmetric particles are found at the Large Hadron Collider (LHC), it will be difficult ...
Indirect detection of gamma rays, neutrinos and charged cosmic rays from dark matter annihilation sh...
We consider the possibility that the cosmological dark matter consists of particles very close in ma...
If dark matter is made of particles governed by weak-scale physics, they may annihilate or decay to ...
© 2017 Dr. Rebecca Kate LeaneThe fundamental nature of dark matter (DM) remains unknown. In this the...
We initiate the study of novel thermal dark matter (DM) scenarios where present-day annihilation of ...
34 pages, published as Chapter 26, pp. 521-546, in Particle Dark Matter: Observations, Models and Se...
We study the fluxes of neutrinos from annihilations of dark matter particles in the Sun and the Eart...
Version 4: addendum about the 2013 AMS positron data (version 5: just refinements and additions to f...
The existence of dark matter (DM) is supported by a large body of evidence on local and cosmological...
This thesis presents advancements in two of the three avenues for the detection of particle dark mat...
Although the existence of Dark Matter (DM) is supported by multiple unrelated evidences at different...
Many astronomical observations, including rotational curve measurements of stars and the analysis of...
Dark matter particles from the galactic halo can be gravitationally trapped in the solar core or in ...
We study fermionic dark matter in a non-supersymmetric extension of the standard model with a family...
Even if supersymmetric particles are found at the Large Hadron Collider (LHC), it will be difficult ...