International audienceThe EDELWEISS collaboration reports on the search for dark matter particle interactions via Migdal effect with masses between 32 MeV·c-2 to 2 GeV·c-2 using a 200 g cryogenic Ge detector sensitive to simultaneously heat and ionization signals and operated underground at the Laboratoire Souterrain de Modane in France. The phonon signal was read out using a transition edge sensor made of a NbSi thin film. The detector was biased at 66 V in order to benefit from the Neganov-Trofimov-Luke amplification and resulting in a resolution on the energy of electron recoils of 4.46 eVee (102.58 eV at 66 V) and an analysis threshold of 30 eVee. The sensitivity is limited by a dominant background not associated to charge creation ...
International audienceThe EDELWEISS collaboration searches for light Dark Matter (DM) particles usin...
International audienceThe EDELWEISS collaboration searches for light Dark Matter (DM) particles usin...
International audienceThe EDELWEISS collaboration searches for light Dark Matter (DM) particles usin...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe Edelweiss collaboration performs light Dark Matter (DM) particles searches...
The EDELWEISS collaboration reports on the search for Dark Matter (DM) particle interactions via Mig...
International audienceThe EDELWEISS collaboration searches for light Dark Matter (DM) particles usin...
International audienceThe EDELWEISS collaboration searches for light Dark Matter (DM) particles usin...
International audienceThe EDELWEISS collaboration searches for light Dark Matter (DM) particles usin...
International audienceThe EDELWEISS collaboration searches for light Dark Matter (DM) particles usin...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe EDELWEISS collaboration reports on the search for dark matter particle int...
International audienceThe Edelweiss collaboration performs light Dark Matter (DM) particles searches...
The EDELWEISS collaboration reports on the search for Dark Matter (DM) particle interactions via Mig...
International audienceThe EDELWEISS collaboration searches for light Dark Matter (DM) particles usin...
International audienceThe EDELWEISS collaboration searches for light Dark Matter (DM) particles usin...
International audienceThe EDELWEISS collaboration searches for light Dark Matter (DM) particles usin...
International audienceThe EDELWEISS collaboration searches for light Dark Matter (DM) particles usin...