1998
DOI: 10.1134/1.567832
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String representation of SU(3) gluodynamics in the Abelian projection

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Cited by 24 publications
(12 citation statements)
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“…After subtracting the contribution of the self-energy of the quark and antiquark we get the static quark-antiquark potential which is written in two parts The integration for V Y ukawa (r) is done easily but an exact calculation cannot be done for V Linear (r). There are some approaches leading to different results for calculating V Linear (r) [12][13][14][15]. In some of them a cutoff is used to make the integral converge at large k [13,14] or k ⊥ [12], where k ⊥ is the perpendicular component of k with respect to n or r (Fig.…”
Section: Quark Confinement Potentialmentioning
confidence: 99%
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“…After subtracting the contribution of the self-energy of the quark and antiquark we get the static quark-antiquark potential which is written in two parts The integration for V Y ukawa (r) is done easily but an exact calculation cannot be done for V Linear (r). There are some approaches leading to different results for calculating V Linear (r) [12][13][14][15]. In some of them a cutoff is used to make the integral converge at large k [13,14] or k ⊥ [12], where k ⊥ is the perpendicular component of k with respect to n or r (Fig.…”
Section: Quark Confinement Potentialmentioning
confidence: 99%
“…(24) The integration for V Y ukawa (r) is done easily but an exact calculation cannot be done for V Linear (r). There are some approaches leading to different results for calculating V Linear (r) [12][13][14][15]. In some of them a cutoff is used to make the integral converge at large k [13,14] or k ⊥ [12], where k ⊥ is the perpendicular component of k with respect to n or r (Fig.…”
Section: Quark Confinement Potentialmentioning
confidence: 99%
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“…[24]; the SU(N ) generalization has been explored, in particular for studies of the θ-term [25] [see Ref. [26] for investigations of the θ-term in the SU(2)-and SU(3)-inspired cases] and for the purposes of further applications to the stochastic vacuum model at N = 3 [27,29] [see also [28] for related studies at N = 3]; the corrections emerging in the vicinity of the London limit have also been explored [30].…”
Section: Introductionmentioning
confidence: 99%
“…This makes it reasonable to consider this model in the London limit, λ → ∞. In this limit, the model (1) allows for an exact string representation, and the resulting string effective action reads [4], [5]…”
Section: Introductionmentioning
confidence: 99%