We study coherent diffractive photon and vector meson production in electron-proton and electron-nucleus collisions within the Color Glass Condensate effective field theory. We show that electron-photon and electron-vector meson azimuthal angle correlations are sensitive to nontrivial spatial correlations in the gluon distribution of the target, and perform explicit calculations using spatially dependent McLerran-Venugopalan initial color charge configurations coupled to the numerical solution of small x JIMWLK evolution equations. We compute the cross-section differentially in Q2 and |t| and find sizeable anisotropies in the electron-photon and electron-J/ψ azimuthal correlations (v1,2≈2–10%) in electron-proton collisions for the kinematic...
We analyse the azimuthal structure of two gluon correlations in the color glass condensate including...
Abstract We propose a novel way of studying the gluon number density (the so-called Weizsäcker–Willi...
We propose a novel way of studying the gluon number density (the so-called Weizsäcker–Williams gluon...
We study coherent diffractive photon and vector meson production in electron-proton and electron-nuc...
We study coherent diffractive photon and vector meson production in electron-proton and electron-nuc...
We calculate azimuthal correlations between the exclusively produced vector meson and the scattered ...
We study inclusive and diffractive dijet production in electron-proton and electron-nucleus collisio...
Experimental processes that are sensitive to partonWigner distributions provide a powerful tool to a...
Experimental processes that are sensitive to parton Wigner distributions provide a powerful tool to ...
We study exclusive dijet production in electron-proton deep inelastic scattering at the future Elect...
We study exclusive dijet production in electron-proton deep inelastic scattering at the future Elect...
We examine the origins of azimuthal correlations observed in high energy proton-nucleus collisions ...
We study exclusive dijet production in electron-proton deep inelastic scattering at the future Elect...
The future electron-ion (eA) collider is expected to probe the high energy regime of the quantum chr...
We analyse the azimuthal structure of two gluon correlations in the color glass condensate including...
We analyse the azimuthal structure of two gluon correlations in the color glass condensate including...
Abstract We propose a novel way of studying the gluon number density (the so-called Weizsäcker–Willi...
We propose a novel way of studying the gluon number density (the so-called Weizsäcker–Williams gluon...
We study coherent diffractive photon and vector meson production in electron-proton and electron-nuc...
We study coherent diffractive photon and vector meson production in electron-proton and electron-nuc...
We calculate azimuthal correlations between the exclusively produced vector meson and the scattered ...
We study inclusive and diffractive dijet production in electron-proton and electron-nucleus collisio...
Experimental processes that are sensitive to partonWigner distributions provide a powerful tool to a...
Experimental processes that are sensitive to parton Wigner distributions provide a powerful tool to ...
We study exclusive dijet production in electron-proton deep inelastic scattering at the future Elect...
We study exclusive dijet production in electron-proton deep inelastic scattering at the future Elect...
We examine the origins of azimuthal correlations observed in high energy proton-nucleus collisions ...
We study exclusive dijet production in electron-proton deep inelastic scattering at the future Elect...
The future electron-ion (eA) collider is expected to probe the high energy regime of the quantum chr...
We analyse the azimuthal structure of two gluon correlations in the color glass condensate including...
We analyse the azimuthal structure of two gluon correlations in the color glass condensate including...
Abstract We propose a novel way of studying the gluon number density (the so-called Weizsäcker–Willi...
We propose a novel way of studying the gluon number density (the so-called Weizsäcker–Williams gluon...