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Related papers: Monopoles, Instantons and Confinement

200 papers

In this talk, I address some open problems in hadron physics and stress their importance for a better understanding of QCD in the confinement regime.

High Energy Physics - Phenomenology · Physics 2009-11-10 Ulf-G. Meißner

We analytically show that mesonic bound states of confined monopoles appear inside a non-Abelian vortex-string in massless three-flavor QCD at large quark chemical potential mu. The orientational modes CP^2 in the internal space of a vortex…

High Energy Physics - Phenomenology · Physics 2011-05-06 Minoru Eto , Muneto Nitta , Naoki Yamamoto

The existence of thresholdless vortex solitons trapped at the core of disclination lattices that realize higher-order topological insulators is reported. The study demonstrates the interplay between nonlinearity and higher-order topology in…

Pattern Formation and Solitons · Physics 2024-09-27 Changming Huang , Ce Shang , Yaroslav V. Kartashov , Fangwei Ye

Recent progress in understanding the emergence of confinement and other nonperturbative effects in the strong interaction vacuum is reviewed. Special emphasis is placed on the role of different types of collective infrared gluonic degrees…

High Energy Physics - Lattice · Physics 2009-11-10 Michael Engelhardt

We generate a random instanton vacuum with various densities and size distributions. We perform numerically the maximally abelian gauge fixing of these configurations in order to find monopole trajectories induced by instantons. We find…

High Energy Physics - Lattice · Physics 2019-08-15 Masahiro Fukushima , Shoichi Sasaki , Hideo Suganuma , Atsunori Tanaka , Hiroshi Toki , Dmitri Diakonov

We (try to) pedagogically explain how monopoles arise in QCD, why maximal Abelian(MA) gauge is ``special'' for monopole study, the Abelian projection in MA gauge, its resultant degrees of freedom(photons, monopoles and charged matter…

High Energy Physics - Phenomenology · Physics 2011-04-15 Ken Yee

Magnetic monopoles are hypothetical particles that may exist as quantized sources and sinks of the magnetic field. In materials, they may appear in an emergent quantum electrodynamics described by a U(1) lattice gauge theory. Particularly,…

Strongly Correlated Electrons · Physics 2019-05-01 Sho Nakosai , Shigeki Onoda

We study topological symmetry breaking via the behaviour of Wilson and 't Hooft loop operators for the 2+1 dimenesional Abelian-Higgs model with Chern-Simons term. The topological linking of instantons, which are closed vortex loop…

High Energy Physics - Theory · Physics 2017-08-23 P. W. Irwin , M. B. Paranjape

It is known that monopoles can be confined by vortex-strings in d=3+1 while vortices can be confined by domain-lines in d=2+1. Here, as a higher dimensional generalization of these, we show that Yang-Mills instantons can be confined by…

High Energy Physics - Theory · Physics 2013-03-26 Muneto Nitta

The condensation of monopoles (dual superconductivity) of QCD vacuum is reviewed. Direct evidence is produced that the system, in the confined phase, is a dual superconductor.

High Energy Physics - Lattice · Physics 2016-11-03 Adriano di Giacomo

We study color confinement properties of the multi-instanton system, which seems to carry an essence of the nonperturbative QCD vacuum. Here we assume that the multi-instanton system is characterized by the infrared suppression of…

High Energy Physics - Lattice · Physics 2009-10-31 Masahiro Fukushima , Hideo Suganuma , Hiroshi Toki

We study numerically the dynamics of quantized vortices and solitons induced by an oscillating potential inside a trapped Bose-Einstein condensate. The dynamics of the topological defects is much different from the case for a linear uniform…

Quantum Gases · Physics 2015-05-19 Kazuya Fujimoto , Makoto Tsubota

We study monopoles and corresponding 't Hooft tensor in QCD with a generic compact gauge group. This issue is relevant to the understanding of color confinement in terms of dual symmetry.

High Energy Physics - Lattice · Physics 2008-12-19 Adriano Di Giacomo , Luca Lepori , Fabrizio Pucci

We review the current status of the problem of constructing classical field theory solutions describing stationary vortex rings in Minkowski space in 3+1 dimensions. We describe the known up to date solutions of this type, such as the…

High Energy Physics - Theory · Physics 2008-12-18 Eugen Radu , Mikhail S. Volkov

We aim at reducing the uncertainties inherent in the analysis of the topological structure by using scale controlled smoothing and observables independent on the "microscopic" description of the instanton ensemble.

High Energy Physics - Lattice · Physics 2009-10-31 I. -O. Stamatescu , Chr. Weiss

Lattice field theory provides a quantitative tool to study the role of nonperturbative semiclassical configurations in QCD. This talk briefly reviews our present understanding of the role of instantons in QCD and describes in detail new…

High Energy Physics - Lattice · Physics 2007-05-23 John W. Negele

A brief and biased overview of the phenomenon of confinement in QCD is presented in three parts: (1) the definition of confinement, (2) properties of confinement, (3) ideas of confinement. The second part chiefly consists of a brief review…

High Energy Physics - Phenomenology · Physics 2009-11-10 Eric S. Swanson

We have numerically calculated topological andnon-topological solitons in two spatial dimensions with Chern-Simons term. Their quantum stability, as well as that of the Maxwell vortex, is analyzed by means of bounce instantons which involve…

High Energy Physics - Theory · Physics 2009-10-22 R. Fiore , D. Galeazzi , L. Masperi , A. Megevand

We clarify relations among topological solitons in various dimensions: a domain wall, non-Abelian vortex, magnetic monopole and Yang-Mills instanton, together with a (non-Abelian) sine-Gordon soliton, baby Skyrmion (lump) and Skyrmion. We…

High Energy Physics - Theory · Physics 2022-05-16 Muneto Nitta

We explore the stability of certain many-body quantum states which may exist at zero or finite temperatures, may lack long-range order and even topological order, and still are thermodynamically distinct from uncorrelated disordered phases.…

Strongly Correlated Electrons · Physics 2024-09-26 Predrag Nikolić