Publication: Cosmogenic background simulations for neutrinoless double beta decay with the DARWIN observatory at various underground sites
Cosmogenic background simulations for neutrinoless double beta decay with the DARWIN observatory at various underground sites
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Adrover, M., Althueser, L., Andrieu, B., Angelino, E., Angevaare, J. R., Antunovic, B., Aprile, E., Babicz, M., Bajpai, D., Barberio, E., Baudis, L., Bazyk, M., Wittweg, C., Volta, G., Biondi, R., Biondi, Y., Bismark, A., Ramírez García, D., Rajado Silva, M., … et al. (2024). Cosmogenic background simulations for neutrinoless double beta decay with the DARWIN observatory at various underground sites. European Physical Journal C : Particles and Fields, 84(1), 88. https://doi.org/10.1140/epjc/s10052-023-12298-w
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Xenon dual-phase time projections chambers (TPCs) have proven to be a successful technology in studying physical phenomena that require low-background conditions. With $40,\textrm{t}$ of liquid xenon (LXe) in the TPC baseline design, DARWIN will have a high sensitivity for the detection of particle dark matter, neutrinoless double beta decay ($0\upnu \upbeta \upbeta $
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Adrover, M., Althueser, L., Andrieu, B., Angelino, E., Angevaare, J. R., Antunovic, B., Aprile, E., Babicz, M., Bajpai, D., Barberio, E., Baudis, L., Bazyk, M., Wittweg, C., Volta, G., Biondi, R., Biondi, Y., Bismark, A., Ramírez García, D., Rajado Silva, M., … et al. (2024). Cosmogenic background simulations for neutrinoless double beta decay with the DARWIN observatory at various underground sites. European Physical Journal C : Particles and Fields, 84(1), 88. https://doi.org/10.1140/epjc/s10052-023-12298-w