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C. Hadjidakis

Researcher at Université Paris-Saclay

Publications -  37
Citations -  1788

C. Hadjidakis is an academic researcher from Université Paris-Saclay. The author has contributed to research in topics: Large Hadron Collider & Quarkonium. The author has an hindex of 17, co-authored 37 publications receiving 1392 citations.

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Heavy-flavour and quarkonium production in the LHC era: from proton–proton to heavy-ion collisions

Anton Andronic, +60 more
TL;DR: In this paper, the authors review the study of open heavy-flavour and quarkonium production in high-energy hadronic collisions, as tools to investigate fundamental aspects of Quantum Chromodynamics, from the proton and nucleus structure at high energy to deconfinement and the properties of the Quark-Gluon Plasma.
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Heavy-flavour and quarkonium production in the LHC era: from proton-proton to heavy-ion collisions

Anton Andronic, +60 more
TL;DR: This report reviews the study of open heavy-flavour and quarkonium production in high-energy hadronic collisions, as tools to investigate fundamental aspects of Quantum Chromodynamics, from the proton and nucleus structure at high energy to deconfinement and the properties of the Quark–Gluon Plasma.
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Rapidity and transverse momentum dependence of inclusive J/Ψ production in pp collisions at s=7 TeV

K. Aamodt, +922 more
- 25 Oct 2011 - 
TL;DR: In this paper, the first results obtained detecting the J/psi through the dilepton decay into e(+)e(-) and mu(+)mu(-) pairs in the rapidity ranges vertical bar y vertical bar < 0.9 and 2.5 < y < 4, respectively, and with acceptance down to zero PT.
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Investigations of Anisotropic Flow Using Multiparticle Azimuthal Correlations in pp,p-Pb, Xe-Xe, and Pb-Pb Collisions at the LHC

Shreyasi Acharya, +1045 more
TL;DR: The observed long-range multiparticle azimuthal correlations in high multiplicity pp and p-Pb collisions can neither be described by pythia 8 nor by impact-parameter-Glasma, music, and ultrarelativistic quantum molecular dynamics model calculations, and hence, provide new insights into the understanding of collective effects in small collision systems.
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Evidence of Spin-Orbital Angular Momentum Interactions in Relativistic Heavy-Ion Collisions.

Shreyasi Acharya, +1020 more
TL;DR: The measured spin alignment is unexpectedly large but qualitatively consistent with the expectation from models which attribute it to a polarization of quarks in the presence of angular momentum in heavy-ion collisions and a subsequent hadronization by the process of recombination.