The XLZD Design Book: Towards the Next-Generation Liquid Xenon Observatory for Dark Matter and Neutrino Physics

This report describes the experimental strategy and technologies for a next-generation xenon observatory sensitive to dark matter and neutrino physics. The detector will have an active liquid xenon target mass of 60-80 tonnes and is proposed by the XENON-LUX-ZEPLIN-DARWIN (XLZD) collaboration. The d...

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Hauptverfasser: Aalbers, J, Adrover, M, Musalhi, A. K. Al, Ames, A, Aprile, E, Babicz, M, Bargemann, J. W, Basharina-Freshville, A, Bazyk, M, Beaupere, N, Biesiadzinski, T. P, Bishop, E, Bismark, A, Boehm, C, Braun, R, Chen, H, Darlington, I, Dave, S, David, A, Dunbar, C. L, Eriksen, S. R, Fayer, S, Fischer, H, Flehmke, T, Flierman, M, Fruth, T. M. A, Gaemers, P, Gaior, R, Gaitskell, R. J, Gallice, N, Glade-Beucke, R, Grandi, L, Grigat, J, Hannen, V, Hansmann-Menzemer, S, Hargittai, N, Hartigan-O'Connor, E, Hood, N. F, Hunt, D, Khaitan, D, Koke, D, von Krosigk, B, Lang, R. F, Lee, J, Lehnert, B, Levinson, L, Li, I, Loizeau, J, Lucchetti, G. M, Luce, T, Macolino, C, Maier, B, Majewski, P. A, Masbou, J, Masson, E, Maupin, C, McCabe, C, McKinsey, D. N, Milutinovic, S, Naylor, A, Nguyen, A, Ostrowskiy, I, Ouahada, S, Paetsch, B, Penning, B, Peres, R, Pershing, T, Pierre, M, Qie, Y, Radeka, V, Rajado, M, García, D. Ramírez, Rischbieter, G. R. C, Roy, A, Rushton, T, Saakyan, R, Santone, D, Eißing, Shen, W, Sherman, L, Shi, S. Y, Shimada, T, Steidl, M, Stenhouse, T, Taylor, W. C, Thers, D, Tovey, D. R, Tranter, J, Tronstad, D. R, Urquijo, P, Vaitkus, A. C, Vetter, S, Volta, G, Woodward, D, Wu, V. H. S, Xing, Y, Xu, Y, Yang, L, Yeh, M, Zha, W
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Zusammenfassung:This report describes the experimental strategy and technologies for a next-generation xenon observatory sensitive to dark matter and neutrino physics. The detector will have an active liquid xenon target mass of 60-80 tonnes and is proposed by the XENON-LUX-ZEPLIN-DARWIN (XLZD) collaboration. The design is based on the mature liquid xenon time projection chamber technology of the current-generation experiments, LZ and XENONnT. A baseline design and opportunities for further optimization of the individual detector components are discussed. The experiment envisaged here has the capability to explore parameter space for Weakly Interacting Massive Particle (WIMP) dark matter down to the neutrino fog, with a 3$\sigma$ evidence potential for the spin-independent WIMP-nucleon cross sections as low as $3\times10^{-49}\rm cm^2$ (at 40 GeV/c$^2$ WIMP mass). The observatory is also projected to have a 3$\sigma$ observation potential of neutrinoless double-beta decay of $^{136}$Xe at a half-life of up to $5.7\times 10^{27}$ years. Additionally, it is sensitive to astrophysical neutrinos from the atmosphere, sun, and galactic supernovae.
DOI:10.48550/arxiv.2410.17137