Resonance Production of Excited U Quark at Fcc-Based Gamma P Colliders

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Date

2018-10

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Volume Title

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JAGIELLONIAN UNIV

Open Access Color

GOLD

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Yes

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Abstract

Several Beyond the Standard Model theories proposed that fermions might have composite substructure. The existence of excited quarks is going to be the noticeable proof for the compositeness of Standard Model fermions. For this reason, excited quarks have been investigated by phenomenological and experimental high-energy physicists at various collider options for the last few decades. The Future Circular Collider (FCC) has been recently planned as particle accelerator to be established at CERN. Beside the root s = 100 TeV proton-proton collisions, the FCC includes electron-positron and electron-proton collision options. Construction of linear e (-) e(+) colliders (or dedicated e-linac) tangential to the FCC will afford an opportunity to handle multi-TeV ep and gamma p collisions. In this respect, we executed a simulation of the resonance production of the excited u quark at the FCC-based gamma p colliders with choosing both the polarized and unpolarized photon beams. The findings revealed that the chirality structure of the q*-q-gamma vertex can be determined by the photon beam polarization. The attainable mass limits of the excited u quark reached the highest values when the polarized photon beam was chosen. In addition, the ultimate compositeness scale values can be handled by appropriate choice of the photon beam polarization.

Description

Keywords

Generation, Substructure, Beams, Fermions, Model, Search, Higgs-boson, Root-s=13 tev, Lepton production, Proton-proton collisions, Beams, Root-s=13 tev, Generation, Substructure, Search, Higgs-boson, Lepton production, Fermions, Model, Proton-proton collisions

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Fields of Science

0103 physical sciences, 01 natural sciences

Citation

Günaydın, Y. O., Sahin, M., & Sultansoy, S. (2017). Resonance Production of Excited u-quark at the FCC Based $\gamma $$ p $ Colliders. arXiv preprint arXiv:1707.00056.

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Q3

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N/A
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OpenCitations Citation Count
6

Source

Acta Physica Polonica B

Volume

49

Issue

10

Start Page

1763

End Page

1779
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Scopus : 5

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