Tetraquarks made of sufficiently unequal-mass heavy quarks are bound in QCD

IF 5 2区 物理与天体物理 Q1 Physics and Astronomy Physical Review D Pub Date : 2024-11-04 DOI:10.1103/physrevd.110.094001
Benoît Assi, Michael L. Wagman
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Abstract

Tetraquarks, bound states composed of two quarks and two antiquarks, have been the subject of intense study but are challenging to understand from first principles. We apply variational and Green’s function Monte Carlo methods to compute tetraquark ground-state energies in potential nonrelativistic QCD using a wide range of color and spatial wave functions. We find no evidence for bound tetraquarks composed of equal-mass quarks and antiquarks. Conversely, we find clear evidence for the existence of bound tetraquarks for sufficiently unequal quark/antiquark mass ratios at all overall mass scales where our effective theory results are applicable. We predict the critical mass ratios for bound state formation and study tetraquark bound states’ spatial and color structure at leading order and next-to-leading order in potential nonrelativistic QCD.
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由质量足够不等的重夸克组成的四夸克在 QCD 中被束缚住了
四夸克是由两个夸克和两个反夸克组成的束缚态,一直是深入研究的主题,但要从第一原理上理解它却很困难。我们运用变分法和格林函数蒙特卡洛法,在潜在的非相对论 QCD 中使用多种颜色和空间波函数计算四夸克基态能量。我们没有发现由等质量夸克和反夸克组成的束缚四夸克的证据。相反,我们发现,在我们的有效理论结果适用的所有总体质量尺度上,当夸克/反夸克质量比足够不相等时,存在束缚四夸克的明显证据。我们预测了束缚态形成的临界质量比,并在潜在非相对论 QCD 中研究了领先阶和次领先阶的四夸克束缚态空间和颜色结构。
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来源期刊
Physical Review D
Physical Review D 物理-天文与天体物理
CiteScore
9.20
自引率
36.00%
发文量
0
审稿时长
2 months
期刊介绍: Physical Review D (PRD) is a leading journal in elementary particle physics, field theory, gravitation, and cosmology and is one of the top-cited journals in high-energy physics. PRD covers experimental and theoretical results in all aspects of particle physics, field theory, gravitation and cosmology, including: Particle physics experiments, Electroweak interactions, Strong interactions, Lattice field theories, lattice QCD, Beyond the standard model physics, Phenomenological aspects of field theory, general methods, Gravity, cosmology, cosmic rays, Astrophysics and astroparticle physics, General relativity, Formal aspects of field theory, field theory in curved space, String theory, quantum gravity, gauge/gravity duality.
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