AbstractThe number of gluons in the hadron wave function is discrete, and their formation in the chain of small x evolution occurs over discrete rapidity intervals of Δy≃1/αs. We therefore consider the evolution as a discrete quantum process. We show that the discrete version of the mean-field Kovchegov evolution equation gives rise to strong fluctuations in the scattering amplitude, not present in the continuous equation. We find that if the linear evolution is as fast as predicted by the perturbative BFKL dynamics, the scattering amplitude at high energies exhibits a chaotic behavior. As a consequence, the properties of diffraction at high energies become universal
We study unequal rapidity correlators in the stochastic Langevin picture of Jalilian-Marian– Iancu–M...
We theoretically and numerically demonstrate that completely integrable scattering processes may exh...
The Color Glass Condensate (CGC) predicts the form of the nuclear wavefunction in QCD at very small ...
AbstractThe number of gluons in the hadron wave function is discrete, and their formation in the cha...
When hadrons scatter at high energies, strong color fields, whose dynamics is described by quantum c...
URL: http://www-spht.cea.fr/articles/T00/166 Evolution des gluons en présence d'un condensat de verr...
We study multi–particle production with rapidity correlations in proton-nucleus collisions at high e...
We study the dynamics of a quantum $p$-spin glass model starting from initial states defined in micr...
High energy scattering was recently shown to be similar to a reaction-diffusion process. The latter ...
We study unequal rapidity correlators in the stochastic Langevin picture of Jalilian-Marian–Iancu–Mc...
International audienceWe study the evolution of a system of interacting ultracold bosons, which pres...
Hadron-hadron interaction and Deep Inelastic Scattering (DIS) at very high energies is dominated by ...
A central concept in the modern understanding of turbulence is the existence of cascades of excitati...
Bose-Einstein condensates loaded into kicked optical lattices can be treated as quantum kicked-rotor...
Recent studies by mathematicians and physicists have identified a close association between the dist...
We study unequal rapidity correlators in the stochastic Langevin picture of Jalilian-Marian– Iancu–M...
We theoretically and numerically demonstrate that completely integrable scattering processes may exh...
The Color Glass Condensate (CGC) predicts the form of the nuclear wavefunction in QCD at very small ...
AbstractThe number of gluons in the hadron wave function is discrete, and their formation in the cha...
When hadrons scatter at high energies, strong color fields, whose dynamics is described by quantum c...
URL: http://www-spht.cea.fr/articles/T00/166 Evolution des gluons en présence d'un condensat de verr...
We study multi–particle production with rapidity correlations in proton-nucleus collisions at high e...
We study the dynamics of a quantum $p$-spin glass model starting from initial states defined in micr...
High energy scattering was recently shown to be similar to a reaction-diffusion process. The latter ...
We study unequal rapidity correlators in the stochastic Langevin picture of Jalilian-Marian–Iancu–Mc...
International audienceWe study the evolution of a system of interacting ultracold bosons, which pres...
Hadron-hadron interaction and Deep Inelastic Scattering (DIS) at very high energies is dominated by ...
A central concept in the modern understanding of turbulence is the existence of cascades of excitati...
Bose-Einstein condensates loaded into kicked optical lattices can be treated as quantum kicked-rotor...
Recent studies by mathematicians and physicists have identified a close association between the dist...
We study unequal rapidity correlators in the stochastic Langevin picture of Jalilian-Marian– Iancu–M...
We theoretically and numerically demonstrate that completely integrable scattering processes may exh...
The Color Glass Condensate (CGC) predicts the form of the nuclear wavefunction in QCD at very small ...