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We study the Hamiltonian approach to 1+1 dimensional Yang-Mills theory in Coulomb gauge, considering both the pure Coulomb gauge and the gauge where in addition the remaining constant gauge field is restricted to the Cartan algebra.
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2003
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D. Zwanziger, “No confinement without Coulomb confinement,” Phys. Rev. Lett
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D. Zwanziger, “Non-perturbative Faddeev-Popov formula and infrared limit of QCD,” Phys. Rev
2004
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A. P. Szczepaniak, “Confinement and gluon propagator in Coulomb gauge QCD,” Phys. Rev
2004
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C. Feuchter and H. Reinhardt, “Variational solution of the Yang-Mills Schroedinger equation in Coulomb gauge,” Phys. Rev
2004
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J. Greensite, S. Olejnik, and D. Zwanziger, “Coulomb energy, remnant symmetry, and the phases of non- Abelian gauge theories,” Phys. Rev
2004
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K. Langfeld and L. Moyaerts, “Propagators in Coulomb gauge from SU(2) lattice gauge theory,” Phys. Rev
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2007
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D. Epple, H. Reinhardt, and W. Schleifenbaum, “Confining Solution of the Dyson-Schwinger Equations in Coulomb Gauge,” Phys. Rev
2007
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2007
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2007
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2008
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P. Watson and H. Reinhardt, “Two-Point Functions of Coulomb Gauge Yang-Mills Theory,” Phys. Rev
2008
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2008
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H. Reinhardt, “The dielectric function of the QCD vacuum,” Phys. Rev. Lett
2008
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2008
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