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Search for Dark-Matter-Nucleon Interactions via Migdal Effect with DarkSide-50.

Authors :
Agnes P
Albuquerque IFM
Alexander T
Alton AK
Ave M
Back HO
Batignani G
Biery K
Bocci V
Bonivento WM
Bottino B
Bussino S
Cadeddu M
Cadoni M
Calaprice F
Caminata A
Campos MD
Canci N
Caravati M
Cargioli N
Cariello M
Carlini M
Cataudella V
Cavalcante P
Cavuoti S
Chashin S
Chepurnov A
Cicalò C
Covone G
D'Angelo D
Davini S
De Candia A
De Cecco S
De Filippis G
De Rosa G
Derbin AV
Devoto A
D'Incecco M
Dionisi C
Dordei F
Downing M
D'Urso D
Fairbairn M
Fiorillo G
Franco D
Gabriele F
Galbiati C
Ghiano C
Giganti C
Giovanetti GK
Goretti AM
Grilli di Cortona G
Grobov A
Gromov M
Guan M
Gulino M
Hackett BR
Herner K
Hessel T
Hosseini B
Hubaut F
Hungerford EV
Ianni A
Ippolito V
Keeter K
Kendziora CL
Kimura M
Kochanek I
Korablev D
Korga G
Kubankin A
Kuss M
La Commara M
Lai M
Li X
Lissia M
Longo G
Lychagina O
Machulin IN
Mapelli LP
Mari SM
Maricic J
Messina A
Milincic R
Monroe J
Morrocchi M
Mougeot X
Muratova VN
Musico P
Nozdrina AO
Oleinik A
Ortica F
Pagani L
Pallavicini M
Pandola L
Pantic E
Paoloni E
Pelczar K
Pelliccia N
Piacentini S
Pocar A
Poehlmann DM
Pordes S
Poudel SS
Pralavorio P
Price DD
Ragusa F
Razeti M
Razeto A
Renshaw AL
Rescigno M
Rode J
Romani A
Sablone D
Samoylov O
Sandford E
Sands W
Sanfilippo S
Savarese C
Schlitzer B
Semenov DA
Shchagin A
Sheshukov A
Skorokhvatov MD
Smirnov O
Sotnikov A
Stracka S
Suvorov Y
Tartaglia R
Testera G
Tonazzo A
Unzhakov EV
Vishneva A
Vogelaar RB
Wada M
Wang H
Wang Y
Westerdale S
Wojcik MM
Xiao X
Yang C
Zuzel G
Source :
Physical review letters [Phys Rev Lett] 2023 Mar 10; Vol. 130 (10), pp. 101001.
Publication Year :
2023

Abstract

Dark matter elastic scattering off nuclei can result in the excitation and ionization of the recoiling atom through the so-called Migdal effect. The energy deposition from the ionization electron adds to the energy deposited by the recoiling nuclear system and allows for the detection of interactions of sub-GeV/c^{2} mass dark matter. We present new constraints for sub-GeV/c^{2} dark matter using the dual-phase liquid argon time projection chamber of the DarkSide-50 experiment with an exposure of (12 306±184)  kg d. The analysis is based on the ionization signal alone and significantly enhances the sensitivity of DarkSide-50, enabling sensitivity to dark matter with masses down to 40  MeV/c^{2}. Furthermore, it sets the most stringent upper limit on the spin independent dark matter nucleon cross section for masses below 3.6  GeV/c^{2}.

Details

Language :
English
ISSN :
1079-7114
Volume :
130
Issue :
10
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
36962014
Full Text :
https://doi.org/10.1103/PhysRevLett.130.101001