Article (Scientific journals)
Gluons in glueballs: spin or helicity?
Mathieu, Vincent; Buisseret, Fabien; Semay, Claude
2008In Physical Review. D, Particles and Fields, 77 (Issue 11), p. 114022 (11
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Abstract :
[en] In the past decade, lattice QCD has been able to compute the low-lying glueball spectrum with accuracy. Like other effective approaches of QCD, potential models still have difficulties to cope with gluonic hadrons. Assuming that glueballs are bound states of valence gluons with zero current mass, it is readily understood that the use of a potential model, intrinsically noncovariant, could be problematic in this case. The main challenge for this kind of model is actually to find a way to introduce properly the more relevant degree of freedom of the gluon: spin or helicity. In this work, we use the so-called helicity formalism of Jacob and Wick to describe two-gluon glueballs. We show, in particular, that this helicity formalism exactly reproduces the JPC numbers which are observed in lattice QCD when the constituent gluons have a helicity-1, without introducing extra states as is the case in most of the potential models. These extra states appear when gluons are seen as spin-1 particles. Using a simple spinless Salpeter model with Cornell potential within the helicity formalism, we obtain a glueball mass spectrum which is in good agreement with lattice QCD predictions for helicity-1 gluons provided instanton-induced interactions are taken into account.
Research center :
AGIF - Algèbre, Géométrie et Interactions fondamentales
Disciplines :
Physics
Author, co-author :
Mathieu, Vincent  ;  Université de Mons > Faculté des Sciences > Physique nucléaire et subnucléaire
Buisseret, Fabien 
Semay, Claude  
Language :
English
Title :
Gluons in glueballs: spin or helicity?
Publication date :
26 June 2008
Journal title :
Physical Review. D, Particles and Fields
ISSN :
0556-2821
Publisher :
American Physical Society, Lancaster, Panama
Volume :
77
Issue :
Issue 11
Pages :
114022 (11 p.)
Peer reviewed :
Peer reviewed
Research unit :
S824 - Physique nucléaire et subnucléaire
Research institute :
R150 - Institut de Recherche sur les Systèmes Complexes
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