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Impact of coherent neutrino nucleus scattering on direct dark matter searches based on CaWO 4 crystals

Authors :
M. Willers
R. Strauss
D. Hauff
Franz von Feilitzsch
A. Gütlein
F. Pröbst
J. Loebell
W. Seidel
A. Münster
G. Angloher
Andreas Erb
N. Ferreiro Iachellini
A. Tanzke
A.C.S.S.M. Bento
F. Petricca
Leo Stodolsky
Lucia Canonica
I. Usherov
M. Wüstrich
C. Bucci
F. Reindl
A. Zöller
S. Wawoczny
Jochen Schieck
M. Uffinger
M. v. Sivers
M. Kiefer
W. Potzel
S. Roth
J.-C. Lanfranchi
C. Sailer
S. Schönert
P. Gorla
K. Rottler
C. Strandhagen
A. Ulrich
H. Kluck
K. Schäffner
J. Jochum
H. Kraus
Source :
Repositório Científico de Acesso Aberto de Portugal, Repositório Científico de Acesso Aberto de Portugal (RCAAP), instacron:RCAAP
Publication Year :
2015
Publisher :
Elsevier BV, 2015.

Abstract

Atmospheric and solar neutrinos scattering coherently off target nuclei will be an important background source for the next generation of direct dark matter searches. In this work we focus on calcium tungstate as target material. For comparison with existing works we calculate the neutrino floor indicating which sensitivities can be reached before the neutrino background appears. In addition, we investigate the sensitivities of future direct dark matter searches using CRESST-II like detectors. Extending previous works we take into account achievable energy resolutions and thresholds as well as beta and gamma backgrounds for this investigation. We show that an exploration of WIMP-nucleon cross sections below the neutrino floor is possible for exposures of $\gtrsim10$ kg-years or higher. In the third part we show that a first detection of coherent neutrino nucleus scattering of atmospheric and solar neutrinos using the same detectors and the backgrounds is feasible for exposures of $\gtrsim50$ kg-years.<br />submitted to Astorparticle Physics

Details

ISSN :
09276505
Volume :
69
Database :
OpenAIRE
Journal :
Astroparticle Physics
Accession number :
edsair.doi.dedup.....835a6acccbbbeb3969f6e298573d9b3a
Full Text :
https://doi.org/10.1016/j.astropartphys.2015.03.010