Pith. sign in

REVIEW 4 cited by

Emission of Single and Few Electrons in XENON1T and Limits on Light Dark Matter

Not yet reviewed by Pith; the record is open.

This paper has not been read by Pith yet. Machine review is queued; the pith claim, tier, and objections will appear here once it completes.

SPECIMEN: schema-true, not a live event

T0 review · schema-true

One-sentence machine reading of the paper's core claim.

pith:XXXXXXXX · record.json · timestamp

arxiv 2112.12116 v3 pith:BG4KPKID submitted 2021-12-22 hep-ex physics.ins-det

E. Aprile , K. Abe , F. Agostini , S. Ahmed Maouloud , M. Alfonsi , L. Althueser , E. Angelino , J. R. Angevaare
show 147 more authors
V. C. Antochi D. Antón Martin F. Arneodo L. Baudis A. L. Baxter L. Bellagamba A. Bernard R. Biondi A. Bismark A. Brown S. Bruenner G. Bruno R. Budnik C. Capelli J. M. R. Cardoso D. Cichon B. Cimmino M. Clark A. P. Colijn J. Conrad J. J. Cuenca-García J. P. Cussonneau V. D'Andrea M. P. Decowski P. Di Gangi S. Di Pede A. Di Giovanni R. Di Stefano S. Diglio A. Elykov S. Farrell A. D. Ferella H. Fischer W. Fulgione P. Gaemers R. Gaior M. Galloway F. Gao R. Glade-Beucke L. Grandi J. Grigat A. Higuera C. Hils L. Hoetzsch J. Howlett M. Iacovacci Y. Itow J. Jakob F. Joerg A. Joy N. Kato P. Kavrigin S. Kazama M. Kobayashi G. Koltman A. Kopec H. Landsman R. F. Lang L. Levinson I. Li S. Li S. Liang S. Lindemann M. Lindner K. Liu F. Lombardi J. Long J. A. M. Lopes Y. Ma C. Macolino J. Mahlstedt A. Mancuso L. Manenti A. Manfredini F. Marignetti T. Marrodán Undagoitia K. Martens J. Masbou D. Masson E. Masson S. Mastroianni M. Messina K. Miuchi K. Mizukoshi A. Molinario S. Moriyama K. Morå Y. Mosbacher M. Murra J. Müller K. Ni U. Oberlack B. Paetsch J. Palacio R. Peres J. Pienaar M. Pierre V. Pizzella G. Plante J. Qi J. Qin D. Ramírez García S. Reichard A. Rocchetti N. Rupp L. Sanchez J. M. F. dos Santos I. Sarnoff G. Sartorelli J. Schreiner D. Schulte H. Schulze Ei{ss}ing M. Schumann L. Scotto Lavina M. Selvi F. Semeria P. Shagin S. Shenyang E. Shockley M. Silva H. Simgen A. Takeda P.-L. Tan A. Terliuk D. Thers F. Toschi G. Trinchero C. Tunnell F. Tönnies K. Valerius G. Volta Y. Wei C. Weinheimer M. Weiss D. Wenz C. Wittweg T. Wolf Z. Xu M. Yamashita L. Yang J. Ye L. Yuan G. Zavattini Y. Zhang M. Zhong T. Zhu J. P. Zopounidis
This is my paper · ORCID
classification hep-exphysics.ins-det
keywords darkelectroneventslimitsmatterbackgroundscorrelateddelayed
verification ladder T0 review T1 audit T2 compute T3 formal
0 comments
read the original abstract

Delayed single- and few-electron emissions plague dual-phase time projection chambers, limiting their potential to search for light-mass dark matter. This paper examines the origins of these events in the XENON1T experiment. Characterization of the intensity of delayed electron backgrounds shows that the resulting emissions are correlated, in time and position, with high-energy events and can effectively be vetoed. In this work we extend previous S2-only analyses down to a single electron. From this analysis, after removing the correlated backgrounds, we observe rates < 30 events/(electron*kg*day) in the region of interest spanning 1 to 5 electrons. We derive 90% confidence upper limits for dark matter-electron scattering, first direct limits on the electric dipole, magnetic dipole, and anapole interactions, and bosonic dark matter models, where we exclude new parameter space for dark photons and solar dark photons.

Discussion (0). Continue with ORCID to comment.

Forward citations

Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Dark Matter Haloscope with a Disordered Dielectric Absorber

    hep-ph 2025-05 conditional novelty 7.0 of 10

    A disordered dielectric powder can act as a broadband dark-matter-to-photon conversion target, and the proposed DPHaSE experiment could probe QCD axions and dark photons in the 10 meV to 1 eV range.

  2. Enhanced Rydberg-Atom Superheterodyne Detection of Hidden-Photon Dark Matter on Chips

    hep-ph 2026-07 conditional novelty 6.0 of 10

    A chip-scale Rydberg-atom superheterodyne receiver inside a compact high-frequency cavity could search for hidden-photon dark matter in the 5×10^-5–7×10^-4 eV mass range with sensitivity down to ε~10^-11.

  3. Searching for Dark Photons with a room-temperature dielectric haloscope

    hep-ex 2026-07 accept novelty 6.0 of 10

    No excess in 904 h of stack-on data yields a 90% CL limit κ < 4.0×10^{-13} for 1.9 eV/c² dark-photon dark matter with a template-calibrated dielectric-CMOS haloscope.

  4. Light Dark Matter Search with 7.8 Tonne-Year of Ionization-Only Data in XENONnT

    hep-ex 2026-01 conditional novelty 6.0 of 10

    An S2-only analysis of 7.83 tonne-years of XENONnT data finds no dark matter excess and sets 90% CL limits, e.g. 6.0e-45 cm^2 for spin-independent scattering at 5 GeV/c^2.

Pith tools