Prediction of Toponium Levels Using a Logarithmic Potential Modeel

Fuente: arXiv
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Main Authors: Muraki, Yasushi, Shibata, Shoichi
Format: Preprint
Published: 2024
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_version_ 1866913615441821696
author Muraki, Yasushi
Shibata, Shoichi
author_facet Muraki, Yasushi
Shibata, Shoichi
contents In this paper, the energy levels of the resonant states of toponium, composed of top quark and anti-top quark, are given on the basis of an empirical law. We predict that the mass of the n-th resonant state of toponium is given by Mass(n)=0.81ln}(n) + 347GeV from the empirical law on the resonance level of the bottomonium. The cross-section produced by electron-positron collisions is 3X10^{-9}mb and an electron-positron collider would need an energy of 270GeV X 270 GeV to find out the resonance state of toponium. This prediction is based on the empirical law that the energy levels of hadron resonance states are expressed in logarithms. An interpretation of the appearance of quark resonance states in logarithmic intervals is also given in the paper. An application of this model, we present that the Okubo-Zwig-lizuka law can be viewed as a creation 11and annihilation problem of the two-dimensional resonance planes.
format Preprint
id arxiv_https___arxiv_org_abs_2412_12574
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Prediction of Toponium Levels Using a Logarithmic Potential Modeel
Muraki, Yasushi
Shibata, Shoichi
High Energy Physics - Phenomenology
In this paper, the energy levels of the resonant states of toponium, composed of top quark and anti-top quark, are given on the basis of an empirical law. We predict that the mass of the n-th resonant state of toponium is given by Mass(n)=0.81ln}(n) + 347GeV from the empirical law on the resonance level of the bottomonium. The cross-section produced by electron-positron collisions is 3X10^{-9}mb and an electron-positron collider would need an energy of 270GeV X 270 GeV to find out the resonance state of toponium. This prediction is based on the empirical law that the energy levels of hadron resonance states are expressed in logarithms. An interpretation of the appearance of quark resonance states in logarithmic intervals is also given in the paper. An application of this model, we present that the Okubo-Zwig-lizuka law can be viewed as a creation 11and annihilation problem of the two-dimensional resonance planes.
title Prediction of Toponium Levels Using a Logarithmic Potential Modeel
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2412.12574