Zb tetraquark channel from lattice QCD and Born-Oppenheimer approximation

Two Zb hadrons with exotic quark structure b¯bd¯u were discovered by Belle experiment. We present a lattice QCD study of the b¯bd¯u system in the approximation of static b quarks, where the total spin of heavy quarks is fixed to one. The energies of eigenstates are determined as a function of the se...

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Main Authors: S. Prelovsek, H. Bahtiyar, J. Petković
Format: Article
Language:English
Published: Elsevier 2020-06-01
Series:Physics Letters B
Online Access:http://www.sciencedirect.com/science/article/pii/S0370269320302719
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spelling doaj-e70c693f156042b1a4c26e53990a224b2020-11-25T02:54:24ZengElsevierPhysics Letters B0370-26932020-06-01805Zb tetraquark channel from lattice QCD and Born-Oppenheimer approximationS. Prelovsek0H. Bahtiyar1J. Petković2Faculty of Mathematics and Physics, University of Ljubljana, Ljubljana, Slovenia; Jozef Stefan Institute, Ljubljana, Slovenia; Institute for Theoretical Physics, University of Regensburg, Regensburg, Germany; Corresponding author at: Faculty of Mathematics and Physics, University of Ljubljana, Ljubljana, Slovenia.Jozef Stefan Institute, Ljubljana, Slovenia; Department of Physics, Mimar Sinan Fine Arts University, Bomonti 34380, Istanbul, TurkeyFaculty of Mathematics and Physics, University of Ljubljana, Ljubljana, Slovenia; Jozef Stefan Institute, Ljubljana, SloveniaTwo Zb hadrons with exotic quark structure b¯bd¯u were discovered by Belle experiment. We present a lattice QCD study of the b¯bd¯u system in the approximation of static b quarks, where the total spin of heavy quarks is fixed to one. The energies of eigenstates are determined as a function of the separation r between b and b¯. The lower eigenstates are related to a bottomonium and a pion. The eigenstate dominated by BB¯⁎ has energy significantly below mB+mB⁎, which points to a sizable attraction for small r. The attractive potential V(r) between B and B¯⁎ is extracted assuming that this eigenstate is related exclusively to BB¯⁎. The Schrödinger equation for BB¯⁎ within the extracted potential leads to a virtual bound state, whose mass depends on the parametrization of the lattice potential. For certain parametrizations, we find a virtual bound state slightly below BB¯⁎ threshold and a narrow peak in the BB¯⁎ rate above threshold - these features could be related to Zb(10610) in the experiment. We surprisingly find also a deep bound state within the undertaken approximations.http://www.sciencedirect.com/science/article/pii/S0370269320302719
collection DOAJ
language English
format Article
sources DOAJ
author S. Prelovsek
H. Bahtiyar
J. Petković
spellingShingle S. Prelovsek
H. Bahtiyar
J. Petković
Zb tetraquark channel from lattice QCD and Born-Oppenheimer approximation
Physics Letters B
author_facet S. Prelovsek
H. Bahtiyar
J. Petković
author_sort S. Prelovsek
title Zb tetraquark channel from lattice QCD and Born-Oppenheimer approximation
title_short Zb tetraquark channel from lattice QCD and Born-Oppenheimer approximation
title_full Zb tetraquark channel from lattice QCD and Born-Oppenheimer approximation
title_fullStr Zb tetraquark channel from lattice QCD and Born-Oppenheimer approximation
title_full_unstemmed Zb tetraquark channel from lattice QCD and Born-Oppenheimer approximation
title_sort zb tetraquark channel from lattice qcd and born-oppenheimer approximation
publisher Elsevier
series Physics Letters B
issn 0370-2693
publishDate 2020-06-01
description Two Zb hadrons with exotic quark structure b¯bd¯u were discovered by Belle experiment. We present a lattice QCD study of the b¯bd¯u system in the approximation of static b quarks, where the total spin of heavy quarks is fixed to one. The energies of eigenstates are determined as a function of the separation r between b and b¯. The lower eigenstates are related to a bottomonium and a pion. The eigenstate dominated by BB¯⁎ has energy significantly below mB+mB⁎, which points to a sizable attraction for small r. The attractive potential V(r) between B and B¯⁎ is extracted assuming that this eigenstate is related exclusively to BB¯⁎. The Schrödinger equation for BB¯⁎ within the extracted potential leads to a virtual bound state, whose mass depends on the parametrization of the lattice potential. For certain parametrizations, we find a virtual bound state slightly below BB¯⁎ threshold and a narrow peak in the BB¯⁎ rate above threshold - these features could be related to Zb(10610) in the experiment. We surprisingly find also a deep bound state within the undertaken approximations.
url http://www.sciencedirect.com/science/article/pii/S0370269320302719
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AT jpetkovic zbtetraquarkchannelfromlatticeqcdandbornoppenheimerapproximation
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