The APEX experiment at JLab. Searching for the vector boson A′ decaying to e+e−

Jefferson Lab’s A′ Experiment (APEX) will search for a new vector boson, the A′, in the mass range 65 MeV < mA′ < 550 MeV, with sensitivity for the A′ coupling to electrons of α′ > 6 × 10−8α, where α = e2/4π. New vector bosons with such small couplings arise naturally from a small kinetic m...

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Main Author: Franklin Gregg B.
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:EPJ Web of Conferences
Online Access:https://doi.org/10.1051/epjconf/201714201015
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spelling doaj-f71d4c40b0c74efb903252647abde0392021-08-02T01:13:41ZengEDP SciencesEPJ Web of Conferences2100-014X2017-01-011420101510.1051/epjconf/201714201015epjconf_admpp2017_01015The APEX experiment at JLab. Searching for the vector boson A′ decaying to e+e−Franklin Gregg B.0Dept. of Physics; Carnegie Mellon UniversityJefferson Lab’s A′ Experiment (APEX) will search for a new vector boson, the A′, in the mass range 65 MeV < mA′ < 550 MeV, with sensitivity for the A′ coupling to electrons of α′ > 6 × 10−8α, where α = e2/4π. New vector bosons with such small couplings arise naturally from a small kinetic mixing of the “dark photon”, A′, with the photon — one of the very few ways in which new forces can couple to the Standard Model — and have received considerable attention as an explanation of various dark-matter related anomalies. In this experiment, A′ bosons produced by radiation off an electron beam could appear as narrow resonances with small production cross-sections in the e+e− invariant mass distribution. The two Jefferson Lab HRS spectrometers will provide a reconstructed invariant-mass resolution for the A′ of δM/M < 0.5%. With a 33-day run, the experiment will achieve high sensitivity by taking advantage of this mass resolution and high statistics of the e+e− pairs, which will be orders of magnitude larger than in previous searches for the A′ boson in this mass range. This paper will review the key concepts of the experiment and the status of the preparations for running APEX. The results of a completed pilot run will be presented.https://doi.org/10.1051/epjconf/201714201015
collection DOAJ
language English
format Article
sources DOAJ
author Franklin Gregg B.
spellingShingle Franklin Gregg B.
The APEX experiment at JLab. Searching for the vector boson A′ decaying to e+e−
EPJ Web of Conferences
author_facet Franklin Gregg B.
author_sort Franklin Gregg B.
title The APEX experiment at JLab. Searching for the vector boson A′ decaying to e+e−
title_short The APEX experiment at JLab. Searching for the vector boson A′ decaying to e+e−
title_full The APEX experiment at JLab. Searching for the vector boson A′ decaying to e+e−
title_fullStr The APEX experiment at JLab. Searching for the vector boson A′ decaying to e+e−
title_full_unstemmed The APEX experiment at JLab. Searching for the vector boson A′ decaying to e+e−
title_sort apex experiment at jlab. searching for the vector boson a′ decaying to e+e−
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2017-01-01
description Jefferson Lab’s A′ Experiment (APEX) will search for a new vector boson, the A′, in the mass range 65 MeV < mA′ < 550 MeV, with sensitivity for the A′ coupling to electrons of α′ > 6 × 10−8α, where α = e2/4π. New vector bosons with such small couplings arise naturally from a small kinetic mixing of the “dark photon”, A′, with the photon — one of the very few ways in which new forces can couple to the Standard Model — and have received considerable attention as an explanation of various dark-matter related anomalies. In this experiment, A′ bosons produced by radiation off an electron beam could appear as narrow resonances with small production cross-sections in the e+e− invariant mass distribution. The two Jefferson Lab HRS spectrometers will provide a reconstructed invariant-mass resolution for the A′ of δM/M < 0.5%. With a 33-day run, the experiment will achieve high sensitivity by taking advantage of this mass resolution and high statistics of the e+e− pairs, which will be orders of magnitude larger than in previous searches for the A′ boson in this mass range. This paper will review the key concepts of the experiment and the status of the preparations for running APEX. The results of a completed pilot run will be presented.
url https://doi.org/10.1051/epjconf/201714201015
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