4.7 Article

Implication of hidden sub-GeV bosons for the (g-2)μ, 8Be-4He anomaly, proton charge radius, EDM of fermions, and dark axion portal

期刊

PHYSICAL REVIEW D
卷 102, 期 9, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.102.095024

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资金

  1. Verbundprojekt 05P2018-Ausbau von ALICE am LHC: Jets und partonische Struktur von Kernen [05P18VTCA1]
  2. Verbundprojekt 05A2017CRESST-XENON: Direkte Suche nach Dunkler Materie mit XENON1T/nT und CRESST-III. Teilprojekt 1 [05A17VTA]
  3. Carl Zeiss Foundation under Project Kepler Center fur Astro-und Teilchenphysik: Hochsensitive Nachweistechnik zur Erforschung des unsichtbaren Universums [Gz: 06532.8/581/2]
  4. FONDECYT (Chile) [1191103]
  5. Tomsk State University Competitiveness Enhancement Program Research of Modern Problems of Quantum Field Theory and Condensed Matter Physics
  6. Tomsk Polytechnic University Competitiveness Enhancement Program (Russia)
  7. Tomsk State University competitiveness improvement program
  8. ANID PIA/APOYO [AFB180002]

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We discuss new physics phenomenology of hidden scalar (S), pseudoscalar (P), vector (V) and axial-vector (A) particles coupled to nucleons and leptons, which could give contributions to proton charge radius, (g - 2)(mu), Be-8-He-4 anomaly and electric dipole moment (EDM) of Standard Model (SM) particles. In particular, we estimate sensitivity of NA64 mu experiment to observe muon missing energy events involving hidden scalar and vector particles. That analysis is based on GEANT4 Monte Carlo simulation of the signal process of muon scattering off target nuclei mu N -> mu NS(V) followed by invisible boson decay into dark matter (DM) particles, S(V) -> chi chi. The existence of light sub-GeV bosons could possibly explain the muon (g - 2) anomaly observed. We also summarize existing bounds on ATOMKI X17(J(P) = 0(-),1(+/-)) boson coupling with neutron, proton, and electron. We implement these constraints to estimate the contribution of P, V. and A particles to proton charge radius via direct 1-loop calculation of Sachs form factors. The analysis reveals the corresponding contribution is negligible. We also calculate bounds on dark axion portal couplings of dimension-five operators, which contribute to the EDMs of leptons and neutron.

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