Reformulating SU(N) Yang-Mills Theory Based on Change of Variables(Particles and Fields)
スポンサーリンク
概要
- 論文の詳細を見る
We propose a new version of SU(N) Yang-Mills theory reformulated in terms of new field variables which are obtained by a nonlinear change of variables from the original Yang-Mills gauge field. The reformulated Yang-Mills theory enables us to study the low-energy dynamics by explicitly extracting the topological degrees of freedom such as magnetic monopoles and vortices to clarify the mechanism for quark confinement. The dual superconductivity in Yang-Mills theory is understood in a gauge-invariant manner, as demonstrated recently by a non-Abelian Stokes theorem for the Wilson loop operator, although the basic idea of this reformulation is based on the Cho-Faddeev-Niemi decomposition of the gauge potential.
- 理論物理学刊行会の論文
- 2008-07-25
著者
-
KONDO Kei-ichi
Department of Urology and Molecular Genetics, Yokohama City University Graduate School of Medicine
-
Kondo Kei-ichi
Department Of Physics Graduate School Of Science Chiba University
-
Shinohara Toru
Graduate School Of Science And Technology Chiba University
-
Kondo Kei-ichi
Department Of Physic Nagoya University
-
MURAKAMI Takeharu
Graduate School of Science and Technology, Chiba University
-
Murakami Takeharu
Graduate School Of Science And Technology Chiba University
-
KONDO Kei-Ichi
Department of Physics, Graduate School of Science, Chiba University
関連論文
- Infrared Behavior of the Ghost Propagator in the Landau Gauge Yang-Mills Theory(Particles and Fields)
- Detection of germline deletions using real-time quantitative polymerase chain reaction in Japanese patients with von Hippel-Lindau disease
- Inconsistency of the λΦ^4 Field Theory in High-Dimensions Constructed from the Broken-Symmetry Phase : Particles and Fields
- Scalar Field Theory from Statistical Mechanics
- Strong Coupling Unquenched QED. II : Numerical Study : Particles and Fields
- Yang-Mills Theory Constructed from Cho-Faddeev-Niemi Decomposition(Particles and Fields)
- Order Parameter for Charge Confinement and Phase Structures in the Lattice U(1) Gauge-Higgs Model : Particles and Fields
- The Triviality of Scalar Field Theories from the Viewpoint of Statistical Mechanics : Particles and Fields
- Reformulating SU(N) Yang-Mills Theory Based on Change of Variables(Particles and Fields)
- Bosonization of Thirring Model in Arbirary Dimension
- Phase Structure of the Gauged Yukawa Model : Particles and Fields
- Renormalization in the Gauged Nambu-Jona-Lasinio Model : Particles and Fields
- Rigorous Analyses on Order Parameters and Charged States in the Lattice Abelian-Higgs Model
- Renormalizable Abelian-Projected Effective Gauge Theory Derived from Quantum Chromodynamics
- Phase Diagram of Strongly Coupled Lattice Yukawa Theories : Particles and Fields
- Abelian-Projected Effective Gauge Theory of QCD with Asymptotic Freedom and Quark Confinement
- Bosonization and Duality of Massive Thirring Model : Particles and Fields
- Cutoff Dependence of Self-Consistent Solutions in Unquenched QED_3 : Particles and Fields
- On the Renormalized Coupling Constant of (ψ^4)_4 Field Theory : Particles and Fields
- Non-Abelian Stokes Theorem and Quark Confinement in SU(N) Yang-Mills Gauge Theory
- Euclidean Quantum Gravity on a Flat Lattice : Particles and Fields