Published January 22, 2016 | Version v1
Journal article

The confining baryonic Y-strings on the lattice

  • 1. Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou (China)
  • 2. State Key Laboratory of Theoretical Physics, Institute of Theoretical Physics, Chinese Academy of Sciences, Beijing 100190 (China)

Description

In a string picture, the nucleon is conjectured as consisting of a Y-shaped gluonic string ended by constituent quarks. In this proceeding, we summarize our results on revealing the signature of the confining Y-bosonic string in the gluonic profile due to a system of three static quarks on the lattice at finite temperature. The analysis of the action density unveils a background of a filled-Δ distribution. However, we found that these Δ-shaped profiles are comprised of three Y-shaped Gaussian-like flux tubes. The length of the revealed Y-string-like distribution is maximum near the deconfinement point and approaches the geometrical minimal near the end of the QCD plateau. The action density width profile returns good fits to a baryonic string model for the junction fluctuations at large quark source separation

Additional details

Identifiers

Publishing Information

Journal Title
AIP Conference Proceedings
Journal Volume
1701
Journal Issue
1
Journal Page Range
p. 030001-030001.10
ISSN
0094-243X
CODEN
APCPCS

Conference

Title
11. conference on quark confinement and hadron spectrum
Dates
8-12 Sep 2014
Place
Saint Petersburg (Russian Federation)

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
47069361
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
Resource subtype / Literary indicator
Conference
Descriptors DEI
DISTRIBUTION; FLUCTUATIONS; GAUSSIAN PROCESSES; LENGTH; NUCLEONS; QUANTUM CHROMODYNAMICS; QUARKS; STRING MODELS; WIDTH
Descriptors DEC
BARYONS; COMPOSITE MODELS; DIMENSIONS; ELEMENTARY PARTICLES; EXTENDED PARTICLE MODEL; FERMIONS; FIELD THEORIES; HADRONS; MATHEMATICAL MODELS; PARTICLE MODELS; QUANTUM FIELD THEORY; QUARK MODEL; VARIATIONS

Optional Information

Notes
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