Low-dimensional long-range topological charge structure in the QCD vacuum -: art. no. 114505

被引:81
作者
Horváth, I
Dong, SJ
Draper, T
Lee, FX
Liu, KF
Mathur, N
Thacker, HB
Zhang, JB
机构
[1] Univ Kentucky, Dept Phys, Lexington, KY 40506 USA
[2] George Washington Univ, Ctr Nucl Studies, Washington, DC 20052 USA
[3] George Washington Univ, Dept Phys, Washington, DC 20052 USA
[4] Jefferson Lab, Newport News, VA 23606 USA
[5] Univ Virginia, Dept Phys, Charlottesville, VA 22901 USA
[6] Univ Adelaide, CSSM, Adelaide, SA 5005, Australia
[7] Univ Adelaide, Dept Phys, Adelaide, SA 5005, Australia
关键词
D O I
10.1103/PhysRevD.68.114505
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
While sign-coherent 4-dimensional structures cannot dominate topological charge fluctuations in the QCD vacuum at all scales due to reflection positivity, it is possible that enhanced coherence exists over extended space-time regions of lower dimension. Using the overlap Dirac operator to calculate topological charge density, we present evidence for such structure in pure-glue SU(3) lattice gauge theory. It is found that a typical equilibrium configuration is dominated by two oppositely charged sign-coherent connected structures ("sheets") covering about 80% of space-time. Each sheet is built from elementary 3D cubes connected through 2D faces, and approximates a low-dimensional curved manifold (or possibly a fractal structure) embedded in the 4D space. At the heart of the sheet is a "skeleton" formed by about 18% of the most intense space-time points organized into a global long-range structure, involving connected parts spreading over maximal possible distances. We find that the skeleton is locally 1-dimensional and propose that its geometrical properties might be relevant for understanding the possible role of topological charge fluctuations in the physics of chiral symmetry breaking.
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页数:7
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