Search results
Results: 42
Number of items: 42
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Aalbers, J., Colijn, A. P., Decowski, M. P., Flierman, M., Fuselli, C., Gaemers, P., Kharbanda, P., Pierre, M., Pollmann, T. R., Weerman, K. M., & The XLZD Collaboration (2025). Neutrinoless double β decay sensitivity of the XLZD rare event observatory. Journal of Physics. G, Nuclear and Particle Physics, 52(4), Article 045102. https://doi.org/10.1088/1361-6471/adb900 -
Aprile, E., Aalbers, J., Colijn, A. P., Decowski, M. P., el Morabit, S., Flierman, M., Fuselli, C., Gaemers, P., Pierre, M., Pollmann, T. R., & XENON Collaboration (2025). Search for Light Dark Matter in Low-Energy Ionization Signals from XENONnT. Physical Review Letters, 134(16), Article 161004. https://doi.org/10.1103/physrevlett.134.161004 -
XENON Collaboration, Aprile, E., Aalbers, J., Angevaare, J. R., Brookes, E. J., Bruenner, S., Colijn, A. P., Decowski, M. P., Flierman, M. E., Fuselli, C., Gaemers, P., Pierre, M. M. M., & Pollmann, T. R. (2024). The XENONnT dark matter experiment. European Physical Journal C, 84, Article 784. https://doi.org/10.1140/epjc/s10052-024-12982-5 -
The XENON Collaboration, Aprile, E., Aalbers, J., Angevaare, J. R., Brookes, E. J., Bruenner, S., Colijn, A. P., Decowski, M. P., Di Pede, S., Gaemers, P., Flierman, M., & Fuselli, C. (2023). The triggerless data acquisition system of the XENONnT experiment. Journal of Instrumentation, 18, Article P07054. https://doi.org/10.1088/1748-0221/18/07/P07054 -
Aalbers, J., Angevaare, J., Bertone, G. F., Breur, P. A., Brookes, E., Bruenner, S., Colijn, A. P., Decowski, M. P., Di Pede, S., Flierman, M., Gaemers, P., Pierre, M., Pollmann, T., Stevens, A., Wolf, T., & DARWIN Collaboration (2023). A next-generation liquid xenon observatory for dark matter and neutrino physics. Journal of Physics G: Nuclear and Particle Physics, 50(1), Article 013001. https://doi.org/10.1088/1361-6471/ac841a -
Aprile, E., Aalbers, J., Angevaare, J., Bruenner, S., Colijn, A. P., Decowski, M. P., Gaemers, P., XENON Collaboration, & Mougeot, X. (2020, November 13). Data from: Excess Electronic Recoil Events in XENON1T [Data set]. Zenodo. https://doi.org/10.5281/zenodo.4273099
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XENON Collaboration, Aprile, E., Aalbers, J., Angevaare, J., Breur, P. A., Brown, A., Colijn, A. P., Decowski, M. P., & Gaemers, P. (2020). Energy resolution and linearity of XENON1T in the MeV energy range. European Physical Journal C, 80(8), Article 785. https://doi.org/10.1140/epjc/s10052-020-8284-0 -
Aprile, E., Aalbers, J., Angevaare, J. R., Bruenner, S., Colijn, A. P., Decowski, M. P., Gaemers, P., XENON Collaboration, & Mougeot, X. (2020). Excess electronic recoil events in XENON1T. Physical Review D. Particles, Fields, Gravitation, and Cosmology, 102(7), Article 072004. https://doi.org/10.1103/PhysRevD.102.072004 -
The XENON Collaboration, Aprile, E., Aalbers, J., Angevaare, J. R., Colijn, A. P., Decowski, M. P., & Gaemers, P. (2020). Projected WIMP sensitivity of the XENONnT dark matter experiment. Journal of Cosmology and Astroparticle Physics, 2020(11), Article 031. https://doi.org/10.1088/1475-7516/2020/11/031 -
DARWIN Collaboration, Aalbers, J., Angevaare, J., Breur, P. A., Colijn, A. P., Decowski, M. P., Gaemers, P., & Loya Villalpando, A. (2020). Solar neutrino detection sensitivity in DARWIN via electron scattering. European Physical Journal C, 80(12), Article 1133. https://doi.org/10.1140/epjc/s10052-020-08602-7
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