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  • The environmental monitorin...
    Kim, H.; Adhikari, G.; Barbosa de Souza, E.; Carlin, N.; Choi, J.J.; Choi, S.; Djamal, M.; Ezeribe, A.C.; França, L.E.; Ha, C.; Hahn, I.S.; Jeon, E.J.; Jo, J.H.; Joo, H.W.; Kang, W.G.; Kauer, M.; Kim, H.J.; Kim, K.W.; Kim, S.H.; Kim, S.K.; Kim, W.K.; Kim, Y.D.; Kim, Y.H.; Ko, Y.J.; Lee, E.K.; Lee, H.; Lee, H.S.; Lee, H.Y.; Lee, I.S.; Lee, J.; Lee, J.Y.; Lee, M.H.; Lee, S.H.; Lee, S.M.; Leonard, D.S.; Manzato, B.B.; Maruyama, R.H.; Neal, R.J.; Olsen, S.L.; Park, B.J.; Park, H.K.; Park, H.S.; Park, K.S.; Pitta, R.L.C.; Prihtiadi, H.; Ra, S.J.; Rott, C.; Shin, K.A.; Scarff, A.; Spooner, N.J.C.; Thompson, W.G.; Yang, L.; Yu, G.H.

    Journal of instrumentation, 01/2022, Letnik: 17, Številka: 1
    Journal Article

    Abstract The COSINE-100 experiment is designed to test the DAMA experiment which claimed an observation of a dark matter signal from an annual modulation in their residual event rate. To measure the 1 %-level signal amplitude, it is crucial to control and monitor nearly all environmental quantities that might systematically mimic the signal. The environmental monitoring also helps ensure a stable operation of the experiment. Here, we describe the design and performance of the centralized environmental monitoring system for the COSINE-100 experiment.