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The exact tree-level calculation of the dark photon production in high-energy electron scattering at the CERN SPS

Dark photon ($A'$) that couples to the standard model fermions via the kinetic mixing with photons and serves as a mediator of dark matter production could be observed in the high-energy electron scattering $e^- + Z ~\rightarrow e^- + Z + A'$ off nuclei followed by the $A' \to invisib...

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Autores principales: Gninenko, S.N., Kirpichnikov, D.V., Kirsanov, M.M., Krasnikov, N.V.
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.physletb.2018.05.010
http://cds.cern.ch/record/2712765
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author Gninenko, S.N.
Kirpichnikov, D.V.
Kirsanov, M.M.
Krasnikov, N.V.
author_facet Gninenko, S.N.
Kirpichnikov, D.V.
Kirsanov, M.M.
Krasnikov, N.V.
author_sort Gninenko, S.N.
collection CERN
description Dark photon ($A'$) that couples to the standard model fermions via the kinetic mixing with photons and serves as a mediator of dark matter production could be observed in the high-energy electron scattering $e^- + Z ~\rightarrow e^- + Z + A'$ off nuclei followed by the $A' \to invisible $ decay. We have performed the exact, tree-level calculations of the $A'$ production cross sections and implemented them in the program for the full simulation of such events in the experiment NA64 at the CERN SPS. Using simulations results, we study the missing energy signature for the bremsstrahlung $A' \rightarrow $ invisible decay that permits the determination of the $\gamma-A'$ mixing strength in a wide, from sub-MeV to sub-GeV, $A'$ mass range. We refine and expand our earlier studies of this signature for discovering $A'$ by including corrections to the previously used calculations based on the improved Weizsaker-Williams approximation, which turn out to be significant. We compare our cross sections values with the results from other calculations and find a good agreement between them. The possibility of future measurements with high-energy electron beams and the sensitivity to $A'$ are briefly discussed.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling cern-27127652021-05-04T07:18:06Zdoi:10.1016/j.physletb.2018.05.010http://cds.cern.ch/record/2712765engGninenko, S.N.Kirpichnikov, D.V.Kirsanov, M.M.Krasnikov, N.V.The exact tree-level calculation of the dark photon production in high-energy electron scattering at the CERN SPShep-phParticle Physics - PhenomenologyDark photon ($A'$) that couples to the standard model fermions via the kinetic mixing with photons and serves as a mediator of dark matter production could be observed in the high-energy electron scattering $e^- + Z ~\rightarrow e^- + Z + A'$ off nuclei followed by the $A' \to invisible $ decay. We have performed the exact, tree-level calculations of the $A'$ production cross sections and implemented them in the program for the full simulation of such events in the experiment NA64 at the CERN SPS. Using simulations results, we study the missing energy signature for the bremsstrahlung $A' \rightarrow $ invisible decay that permits the determination of the $\gamma-A'$ mixing strength in a wide, from sub-MeV to sub-GeV, $A'$ mass range. We refine and expand our earlier studies of this signature for discovering $A'$ by including corrections to the previously used calculations based on the improved Weizsaker-Williams approximation, which turn out to be significant. We compare our cross sections values with the results from other calculations and find a good agreement between them. The possibility of future measurements with high-energy electron beams and the sensitivity to $A'$ are briefly discussed.Dark photon ( A′ ) that couples to the standard model fermions via the kinetic mixing with photons and serves as a mediator of dark matter production could be observed in the high-energy electron scattering e−+Z→e−+Z+A′ off nuclei followed by the bremsstrahlung A′→invisible decay. We cross check the exact tree-level calculations of the A′ production cross sections by other results and implement them in the program for the full simulation of such events in the experiment NA64 at the CERN SPS . Using simulations results, we study the missing energy signature for the A′→invisible decay that allows to probe the γ−A′ mixing strength in a wide, from sub-MeV to sub-GeV, A′ mass range. We refine and expand our earlier studies of this signature by including corrections to the previously used calculations based on the improved Weizsaker–Williams (IWW) approximation, which turn out to be significant. We find that the commonly used IWW approach can lead to substantial overestimation of the sensitivity to A′ in fixed target experiments. The possibility of future searches with high-energy electron beams and their sensitivity to A′ are briefly discussed.arXiv:1712.05706oai:cds.cern.ch:27127652017-12-15
spellingShingle hep-ph
Particle Physics - Phenomenology
Gninenko, S.N.
Kirpichnikov, D.V.
Kirsanov, M.M.
Krasnikov, N.V.
The exact tree-level calculation of the dark photon production in high-energy electron scattering at the CERN SPS
title The exact tree-level calculation of the dark photon production in high-energy electron scattering at the CERN SPS
title_full The exact tree-level calculation of the dark photon production in high-energy electron scattering at the CERN SPS
title_fullStr The exact tree-level calculation of the dark photon production in high-energy electron scattering at the CERN SPS
title_full_unstemmed The exact tree-level calculation of the dark photon production in high-energy electron scattering at the CERN SPS
title_short The exact tree-level calculation of the dark photon production in high-energy electron scattering at the CERN SPS
title_sort exact tree-level calculation of the dark photon production in high-energy electron scattering at the cern sps
topic hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.physletb.2018.05.010
http://cds.cern.ch/record/2712765
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