166 research outputs found

    Search for the dark photon and the dark Higgs boson at Belle

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    The dark photon, Aβ€²A^\prime, and the dark Higgs boson, hβ€²h^\prime, are hypothetical constituents featured in a number of recently proposed Dark Sector Models. Assuming prompt decays of both dark particles, we search for their production in the so-called Higgs-strahlung channel, e+eβˆ’β†’Aβ€²hβ€²e^+e^- \rightarrow A^\prime h', with hβ€²β†’Aβ€²Aβ€²h^\prime \rightarrow A^\prime A^\prime. We investigate ten exclusive final-states with Aβ€²β†’e+eβˆ’A^\prime \rightarrow e^+e^-, ΞΌ+ΞΌβˆ’\mu^+\mu^-, or Ο€+Ο€βˆ’\pi^+\pi^-, in the mass ranges 0.10.1~GeV/c2c^2~<mAβ€²<3.5< m_{A^\prime} < 3.5~GeV/c2c^2 and 0.20.2~GeV/c2c^2~<mhβ€²<10.5< m_{h'} < 10.5~GeV/c2c^2. We also investigate three inclusive final-states, 2(e+eβˆ’)X2(e^+e^-)X, 2(ΞΌ+ΞΌβˆ’)X2(\mu^+\mu^-)X, and (e+eβˆ’)(ΞΌ+ΞΌβˆ’)X(e^+e^-)(\mu^+\mu^-)X, where XX denotes a dark photon candidate detected via missing mass, in the mass ranges 1.11.1~GeV/c2c^2~<mAβ€²<3.5< m_{A^\prime} < 3.5~GeV/c2c^2 and 2.22.2~GeV/c2c^2~<mhβ€²<10.5< m_{h'} < 10.5~GeV/c2c^2. Using the entire 977 fbβˆ’1977\,\mathrm{fb}^{-1} data set collected by Belle, we observe no significant signal. We obtain individual and combined 90%\% confidence level upper limits on the branching fraction times the Born cross section, BΓ—ΟƒBorn\cal B \times \sigma_{\mathrm{Born}}, on the Born cross section, ΟƒBorn\sigma_{\mathrm{Born}}, and on the dark photon coupling to the dark Higgs boson times the kinetic mixing between the Standard Model photon and the dark photon, Ξ±DΓ—Ο΅2\alpha_D \times \epsilon^2. These limits improve upon and cover wider mass ranges than previous experiments. The limits from the final-states 3(Ο€+Ο€βˆ’)3(\pi^+\pi^-) and 2(e+eβˆ’)X2(e^+e^-)X are the first placed by any experiment. For Ξ±D\alpha_D equal to 1/137, mhβ€²<m_{h'}< 8 GeV/c2c^2, and mAβ€²<m_{A^\prime}< 1 GeV/c2c^2, we exclude values of the mixing parameter, Ο΅\epsilon, above ∼8Γ—10βˆ’4\sim 8 \times 10^{-4}
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