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2024年10月30日

Dark-matter pair production at the ILC in the littlest Higgs model with T-parity

  • In the littlest Higgs model with T-parity, the heavy photon (AH) is supposed to be a possible dark matter (DM) candidate. The direct proof of the validity of this model is to produce the heavy photon at an accelerator. In this paper, we study the production rate of e+e-→AHAH at the international e+e- linear collider (ILC) in the littlest Higgs model with T-parity, and show the distributions of the transverse momenta of AH. The numerical results indicate that the heavy photon production rate could reach the 10-1fb level at some parameter space, so this could be a good chance to observe the heavy photon via the pair production process with high luminosity at the ILC (500 fb-1). We know that DM is composed of weakly interacting massive particles, so the interactions with standard model particles are weak. How to detect heavy photons at a collider and distinguish them from other DM candidates are discussed in the nal section of the paper.
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Get Citation
QIAO Qing-Peng and XU Bin. Dark-matter pair production at the ILC in the littlest Higgs model with T-parity[J]. Chinese Physics C, 2013, 37(3): 033103. doi: 10.1088/1674-1137/37/3/033103
QIAO Qing-Peng and XU Bin. Dark-matter pair production at the ILC in the littlest Higgs model with T-parity[J]. Chinese Physics C, 2013, 37(3): 033103.  doi: 10.1088/1674-1137/37/3/033103 shu
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Received: 2012-04-27
Revised: 2012-09-12
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Dark-matter pair production at the ILC in the littlest Higgs model with T-parity

    Corresponding author: QIAO Qing-Peng,

Abstract: In the littlest Higgs model with T-parity, the heavy photon (AH) is supposed to be a possible dark matter (DM) candidate. The direct proof of the validity of this model is to produce the heavy photon at an accelerator. In this paper, we study the production rate of e+e-→AHAH at the international e+e- linear collider (ILC) in the littlest Higgs model with T-parity, and show the distributions of the transverse momenta of AH. The numerical results indicate that the heavy photon production rate could reach the 10-1fb level at some parameter space, so this could be a good chance to observe the heavy photon via the pair production process with high luminosity at the ILC (500 fb-1). We know that DM is composed of weakly interacting massive particles, so the interactions with standard model particles are weak. How to detect heavy photons at a collider and distinguish them from other DM candidates are discussed in the nal section of the paper.

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