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V. Ptitsyn

Researcher at Brookhaven National Laboratory

Publications -  10
Citations -  1678

V. Ptitsyn is an academic researcher from Brookhaven National Laboratory. The author has contributed to research in topics: Quantum chromodynamics & Gluon. The author has an hindex of 6, co-authored 10 publications receiving 1304 citations.

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Journal ArticleDOI

Electron-Ion Collider: The next QCD frontier: Understanding the glue that binds us all

Alberto Accardi, +83 more
TL;DR: In this article, the science case of an Electron-Ion Collider (EIC), focused on the structure and interactions of gluon-dominated matter, with the intent to articulate it to the broader nuclear science community, is presented.
Posted Content

Electron Ion Collider: The Next QCD Frontier - Understanding the glue that binds us all

Alberto Accardi, +83 more
TL;DR: The science case of an Electron-Ion Collider (EIC), focused on the structure and interactions of gluon-dominated matter, with the intent to articulate it to the broader nuclear science community was presented in this article.
Posted Content

Gluons and the quark sea at high energies: distributions, polarization, tomography

Daniël Boer, +188 more
TL;DR: A ten-week program on "Gluons and the quark sea at high-energies", which took place at the Institute for Nuclear Theory in Seattle in Fall 2010, has been described in this paper, where the principal aim was to develop and sharpen the science case for an Electron-Ion Collider (EIC), a facility that will be able to collide electrons and positrons with polarized protons and with light to heavy nuclei at high energies.
ReportDOI

Gluons and the Quark Sea at High Energies: Distributions, Polarization, Tomography

Daniël Boer, +188 more
TL;DR: A ten-week program on "Gluons and the quark sea at high-energies", which took place at the Institute for Nuclear Theory in Seattle in Fall 2010, has been described in this paper, where the principal aim was to develop and sharpen the science case for an Electron-Ion Collider (EIC), a facility that will be able to collide electrons and positrons with polarized protons and with light to heavy nuclei at high energies.

Global orbit feedback at RHIC

TL;DR: For improved reproducibility of good operating conditions and ramp commissioning efficiency, new dual-plane slow orbit feedback during the energy ramp was implemented during run-10 in the Relativistic Heavy Ion Collider (RHIC) as discussed by the authors.