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Showing 1 to 5 of 5 for “"Colour Glass Condensate"”.
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Exclusive J/Ψ Vector-Meson production in high-energy nuclear collisions: a cross-section determinaton in the Colour Glass Condensate effective field theory and a feasibility study using the STARlight Monte Carlo event generator
… calculation is done in the context of the Colour Glass Condensate effective field theory. Rapidity-averaged n-point correlators are used to describe the strong interaction part of this process. The JIMWLK equation can be used to predict the energy evolution of a correlator. In order to …
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A gauge-invariant, symmetry-preserving truncation of JIMWLK
The colour glass condensate captures quantum chromodynamics in its application to high-energy collider experiments in the spirit of an effective field theory. In deeply inelastic lepton-hadron scattering experiments, as well as in hadron-hadron collisions, the internal degrees of freedom of …
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Rapidity evolution of observables at high energies using the Gaussian truncation
… is well described through the use of the colour-glass condensate. In this domain, the interaction of coloured objects with the CGC medium is well explained through the use of path-ordered colour rotations, called Wilson Lines, as well as their correlators. The rapidity evolution of these …
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Parallel computing solutions to the Balitsky-Kovchegov equation
… the energy evolution of observables in the colour glass condensate (CGC) state of matter, which is particularly relevant to collider physics. Currently there are many implementations of JIMWLK evolution in the spirit of the factorised Balitsky-Kovchegov (BK) equation for the total cross …
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Investigating the 4-point truncation of the JIMWLK evolution equation
The Colour Glass Condensate (CGC) is a dense gluonic state that dominates in-state hadrons in deep inelastic scattering (DIS). The JIMWLK equation describes the rapidity evolution of Wilson line correlators in the CGC framework, which are crucial for computing cross-sections in DIS. However, JIMWLK …