AMoRE (100Mo)

(Advanced Mo based Rare process Experiment)

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1 - Neutrinoless Double Beta Decay

First Results from the AMoRE-Pilot neutrinoless double beta decay experiment, V. Alenkov et al. (AMoRE), Eur.Phys.J. C79 (2019) 791, arXiv:1903.09483.

2 - Detector

Neutron and muon-induced background studies for the AMoRE double-beta decay experiment, H.W. Bae, E.J. Jeon, Y.D. Kim, S.W. Lee (AMoRE), Astropart.Phys. 114 (2020) 60-67, arXiv:1812.07476.
A CaMoO4 Crystal Low Temperature Detector for the AMoRE Neutrinoless Double Beta Decay Search, G.B. Kim et al. (AMoRE), Adv. High Energy Phys. 2015 (2015) 817530, arXiv:1602.07401.
Simulations of background sources in AMoRE-I experiment, A. Luqman et al. (AMoRE), Nucl.Instrum.Meth. A855 (2017) 140-147, arXiv:1601.01249.
Technical Design Report for the AMoRE $0\nu\beta\beta$ Decay Search Experiment, V. Alenkov et al. (AMoRE), arXiv:1512.05957, 2015.
AMoRE: Collaboration for searches for the neutrinoless double-beta decay of the isotope of $^{100}Mo$ with the aid of $^{40}Ca^{100}MoO_{4}$ as a cryogenic scintillation detector, N.D. Khanbekov (AMoRE), Phys.Atom.Nucl. 76 (2013) 1086-1089.

3 - Conference Proceedings

AMoRE experiment: a search for neutrinoless double beta decay of Mo-100 isotope with Ca-40 MoO-100(4) cryogenic scintillation detector, H. Bhang, R.S. Boiko, D.M. Chernyak, J.H. Choi, S. Choi et al., J. Phys. Conf. Ser. 375 (2012) 042023.

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Last Update: Tue 18 Feb 2020, 08:44:22 UTC