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What can We Learn from Triple Top-Quark Production?

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abstract

Different from other multiple top-quark productions, triple top-quark production requires the presence of both flavor violating neutral interaction and flavor conserving neutral interaction. We describe the interaction of triple top-quarks and up-quark in terms of two dimension-6 operators; one can be induced by a new heavy vector resonance, the other by a scalar resonance. Combining same-sign top-quark pair production and four top-quark production, we explore the potential of the 13 TeV LHC on searching for the triple top-quark production.

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hep-ph 1

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2025 1

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representative citing papers

Triple top baryon $\Omega_{ttt}$

hep-ph · 2025-08-26 · conditional · novelty 5.0

The triple-top baryon Ωttt is predicted to have mass 513.58 GeV, binding energy 4.13 GeV, and a dominant W+W+W+bbb decay, with production cross sections too small to observe at near-future colliders.

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  • Triple top baryon $\Omega_{ttt}$ hep-ph · 2025-08-26 · conditional · none · ref 53 · internal anchor

    The triple-top baryon Ωttt is predicted to have mass 513.58 GeV, binding energy 4.13 GeV, and a dominant W+W+W+bbb decay, with production cross sections too small to observe at near-future colliders.