Directional detection of Dark Matter particles (DM) in the MeV mass range could be accomplished by studying electron recoils in large arrays of parallel carbon nanotubes. In a scattering process with a lattice electron, a DM particle might transfer sufficient energy to eject it from the nanotube surface. An external electric field is added to drive the electron from the open ends of the array to the detection region. The anisotropic response of this detection scheme, as a function of the orientation of the target with respect to the DM wind, is calculated, and it is concluded that no direct measurement of the electron ejection angle is needed to explore significant regions of the light DM exclusion plot. A compact sensor, in which the catho...
Directional detection can provide unambiguous observation of Dark Matter interactions even in presen...
International audienceMIMAC is a project of micro-TPC matrix of gaseous chambers (helium, CF4 ...) f...
For the last 10 years, the search for dark matter (DM) was carried out taking into account the fact ...
Directional detection of Dark Matter particles (DM) in the MeV mass range could be accomplished by s...
Directional detection of Dark Matter (DM) particles could be accomplished by studying either ion or ...
A new solution to the problem of dark matter directional detection might come from the use of large...
Large arrays of aligned carbon nanotubes (CNTs), open at one end, could be used as target material f...
Carbon nanostructures offer exciting new possibilities in the detection of light dark matter. A dark...
The ANDROMeDa (Aligned Nanotube Detector for Research On MeV Dark matter) project aims to develop a ...
In this paper we will briefly introduce the idea of using Carbon Nanotubes (CNT) as target for the d...
© 2019 authors. Published by the American Physical Society. We propose the use of superconducting na...
We propose two-dimensional materials as targets for direct detection of dark matter. Using graphene ...
Direct detection strategies are proposed for dark matter particles with MeV to GeV mass. In this lar...
We propose a search for low mass dark matter particles through momentum recoils caused by their scat...
A low-energy electron point source microscope equipped with a position-sensitive energy analyzer is ...
Directional detection can provide unambiguous observation of Dark Matter interactions even in presen...
International audienceMIMAC is a project of micro-TPC matrix of gaseous chambers (helium, CF4 ...) f...
For the last 10 years, the search for dark matter (DM) was carried out taking into account the fact ...
Directional detection of Dark Matter particles (DM) in the MeV mass range could be accomplished by s...
Directional detection of Dark Matter (DM) particles could be accomplished by studying either ion or ...
A new solution to the problem of dark matter directional detection might come from the use of large...
Large arrays of aligned carbon nanotubes (CNTs), open at one end, could be used as target material f...
Carbon nanostructures offer exciting new possibilities in the detection of light dark matter. A dark...
The ANDROMeDa (Aligned Nanotube Detector for Research On MeV Dark matter) project aims to develop a ...
In this paper we will briefly introduce the idea of using Carbon Nanotubes (CNT) as target for the d...
© 2019 authors. Published by the American Physical Society. We propose the use of superconducting na...
We propose two-dimensional materials as targets for direct detection of dark matter. Using graphene ...
Direct detection strategies are proposed for dark matter particles with MeV to GeV mass. In this lar...
We propose a search for low mass dark matter particles through momentum recoils caused by their scat...
A low-energy electron point source microscope equipped with a position-sensitive energy analyzer is ...
Directional detection can provide unambiguous observation of Dark Matter interactions even in presen...
International audienceMIMAC is a project of micro-TPC matrix of gaseous chambers (helium, CF4 ...) f...
For the last 10 years, the search for dark matter (DM) was carried out taking into account the fact ...