S-Wave Heavy Quarkonium Spectra: Mass, Decays, and Transitions

In this paper we revisited phenomenological potentials. We studied S-wave heavy quarkonium spectra by two potential models. The first one is power potential and the second one is logarithmic potential. We calculated spin averaged masses, hyperfine splittings, Regge trajectories of pseudoscalar and v...

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Main Author: Halil Mutuk
Format: Article
Language:English
Published: Wiley 2018-01-01
Series:Advances in High Energy Physics
Online Access:http://dx.doi.org/10.1155/2018/5961031
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author Halil Mutuk
author_facet Halil Mutuk
author_sort Halil Mutuk
collection DOAJ
description In this paper we revisited phenomenological potentials. We studied S-wave heavy quarkonium spectra by two potential models. The first one is power potential and the second one is logarithmic potential. We calculated spin averaged masses, hyperfine splittings, Regge trajectories of pseudoscalar and vector mesons, decay constants, leptonic decay widths, two-photon and two-gluon decay widths, and some allowed M1 transitions. We studied ground and 4 radially excited S-wave charmonium and bottomonium states via solving nonrelativistic Schrödinger equation. Although the potentials which were studied in this paper are not directly QCD motivated potential, obtained results agree well with experimental data and other theoretical studies.
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spelling doaj-art-ecc10c61f851404fb8fdc4ff677dcf7b2025-08-20T03:21:23ZengWileyAdvances in High Energy Physics1687-73571687-73652018-01-01201810.1155/2018/59610315961031S-Wave Heavy Quarkonium Spectra: Mass, Decays, and TransitionsHalil Mutuk0Physics Department, Faculty of Arts and Sciences, Ondokuz Mayis University, 55139 Samsun, TurkeyIn this paper we revisited phenomenological potentials. We studied S-wave heavy quarkonium spectra by two potential models. The first one is power potential and the second one is logarithmic potential. We calculated spin averaged masses, hyperfine splittings, Regge trajectories of pseudoscalar and vector mesons, decay constants, leptonic decay widths, two-photon and two-gluon decay widths, and some allowed M1 transitions. We studied ground and 4 radially excited S-wave charmonium and bottomonium states via solving nonrelativistic Schrödinger equation. Although the potentials which were studied in this paper are not directly QCD motivated potential, obtained results agree well with experimental data and other theoretical studies.http://dx.doi.org/10.1155/2018/5961031
spellingShingle Halil Mutuk
S-Wave Heavy Quarkonium Spectra: Mass, Decays, and Transitions
Advances in High Energy Physics
title S-Wave Heavy Quarkonium Spectra: Mass, Decays, and Transitions
title_full S-Wave Heavy Quarkonium Spectra: Mass, Decays, and Transitions
title_fullStr S-Wave Heavy Quarkonium Spectra: Mass, Decays, and Transitions
title_full_unstemmed S-Wave Heavy Quarkonium Spectra: Mass, Decays, and Transitions
title_short S-Wave Heavy Quarkonium Spectra: Mass, Decays, and Transitions
title_sort s wave heavy quarkonium spectra mass decays and transitions
url http://dx.doi.org/10.1155/2018/5961031
work_keys_str_mv AT halilmutuk swaveheavyquarkoniumspectramassdecaysandtransitions