Elliptic Anisotropy Measurement of the F0(980) Hadron in Proton-Lead Collisions and Evidence for Its Quark-Antiquark Composition

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Abstract

Despite the f(0)(980) hadron having been discovered half a century ago, the question about its quark content has not been settled: it might be an ordinary quark-antiquark (q (q) over bar) meson, a tetraquark (q (q) over barq (q) over bar) exotic state, a kaon-antikaon (K (K) over bar) molecule, or a quark-antiquark-gluon (q (q) over barg) hybrid. This paper reports strong evidence that the f(0)(980) state is an ordinary q (q) over bar meson, inferred from the scaling of elliptic anisotropies (v(2)) with the number of constituent quarks (n(q)), as empirically established using conventional hadrons in relativistic heavy ion collisions. The f(0)(980) state is reconstructed via its dominant decay channel f(0)(980) -> pi(+)pi(-), in proton-lead collisions recorded by the CMS experiment at the LHC, and its v(2) is measured as a function of transverse momentum (p(T)). It is found that the n(q) = 2 (q (q) over bar state) hypothesis is favored over n(q) = 4 (q (q) over barq (q) over bar or K (K) over bar states) by 7.7, 6.3, or 3.1 standard deviations in the p(T) < 10, 8, or 6 GeV/c ranges, respectively, and over n(q) = 3 (q<(q)over bar>g hybrid state) by 3.5 standard deviations in the p(T) < 8GeV/c range. This result represents the first determination of the quark content of the f(0)(980) state, made possible by using a novel approach, and paves the way for similar studies of other exotic hadron candidates.

Description

Pugliese, Gabriella/0000-0001-5460-2638; Heath, Helen/0000-0001-6576-9740; Benato, Lisa/0000-0001-5135-7489; Shopova, Mariana/0000-0001-6664-2493; Sauvan, Jean-Baptiste/0000-0001-5187-3571; Puerta Pelayo, Jesus/0000-0001-7390-1457; Acosta, Darin/0000-0001-5367-1738; Hernández Calama, José María/0000-0001-6436-7547; Giacomo, Bolini/0000-0001-5490-605X; Shopova, Mariana/0000-0001-6664-2493;

Keywords

Hadron, Particle Physics, Proton, Anisotropy, Physics, heavy ion: scattering, interpretation of experiments: CERN LHC Coll, [PHYS.HEXP] Physics [physics]/High Energy Physics - Experiment [hep-ex], [PHYS.NEXP] Physics [physics]/Nuclear Experiment [nucl-ex], heavy ion, scattering, hadron: exotic, FOS: Physical sciences, anisotropy, quark antiquark, GeV, transverse momentum, interpretation of experiments: CMS, meson, Article, High Energy Physics - Experiment, High Energy Physics - Experiment (hep-ex), quark: constituent, quark, constituent, Nuclear Experiment (nucl-ex), Nuclear Experiment, hybrid, PARTICLE PHYSICS;LARGE HADRON COLLIDER;CMS, hadron, exotic, CMS, scaling, 500, tetraquark, LARGE HADRON COLLIDER, CERN LHC Coll, PARTICLE PHYSICS, exotic, [PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex], 530, quark, [PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex], High energy physics, constituent, scattering, heavy ion, hadron, LHC, Experimental particle physics, Elliptic anisotropy f0(980) proton-lead collisions quark-antiquark composition LHC CMS, info:eu-repo/classification/ddc/500, Coalescence, Flow, physics, proton, experimental nuclear physics, Model, Engineering sciences. Technology, FLOW, COALESCENCE, COALESCENCE; MODEL; FLOW, MODEL, Physics and Astronomy

Fields of Science

01 natural sciences, 0103 physical sciences

Citation

WoS Q

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Volume

16

Issue

1

Start Page

7990

End Page

7990
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