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...
Main Authors: | , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Elsevier
2020-06-01
|
Series: | Physics Letters B |
Online Access: | http://www.sciencedirect.com/science/article/pii/S0370269320302719 |
id |
doaj-e70c693f156042b1a4c26e53990a224b |
---|---|
record_format |
Article |
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 |
work_keys_str_mv |
AT sprelovsek zbtetraquarkchannelfromlatticeqcdandbornoppenheimerapproximation AT hbahtiyar zbtetraquarkchannelfromlatticeqcdandbornoppenheimerapproximation AT jpetkovic zbtetraquarkchannelfromlatticeqcdandbornoppenheimerapproximation |
_version_ |
1724721327967830016 |