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P.V. Ruuskanen

Researcher at University of Jyväskylä

Publications -  67
Citations -  3018

P.V. Ruuskanen is an academic researcher from University of Jyväskylä. The author has contributed to research in topics: Parton & Perturbative QCD. The author has an hindex of 24, co-authored 67 publications receiving 2937 citations. Previous affiliations of P.V. Ruuskanen include Helsinki Institute of Physics & University of Helsinki.

Papers
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Radial and elliptic flow at RHIC: Further predictions

TL;DR: In this article, the transverse momentum dependence of the spectra and the elliptic flow for different hadrons in Au+Au collisions at ≈130 AGeV was predicted using a hydrodynamic model.
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Scale evolution of nuclear parton distributions

TL;DR: Using the NMC and E665 nuclear structure function ratios F2A/F2D and F2C from deep inelastic lepton-nucleus collisions, and the E772 Drell-Yan dilepton cross sections from proton-nuclear collisions, the authors determined nuclear parton distributions at an initial scale Q02.
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Scaling of transverse energies and multiplicities with atomic number and energy in ultrarelativistic nuclear collisions

TL;DR: In this paper, the effect of all momentum scales can be estimated by performing the computation at one transverse momentum scale, the saturation momentum, and the initial energy density and produced gluon, quark and antiquark numbers scale with atomic number and beam energy in ultrarelativistic heavy ion collisions.
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Heavy-ion collisions at the LHC-Last call for predictions

Néstor Armesto, +194 more
- 01 May 2008 - 
TL;DR: A compilation of predictions for the forthcoming Heavy Ion Program at the Large Hadron Collider, as presented at the CERN Theory Institute 'Heavy Ion Collisions at the LHC - Last Call for Predictions', held from 14th May to 10th June 2007, can be found in this article.
Journal ArticleDOI

Scaling of transverse energies and multiplicities with atomic number and energy in ultrarelativistic nuclear collisions

TL;DR: In this article, the effect of all momentum scales can be estimated by performing the computation at one transverse momentum scale, the saturation momentum, and the initial energy density and produced gluon, quark and antiquark numbers scale with atomic number and beam energy in ultrarelativistic heavy ion collisions.