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20172020
most citedParton model description of multiparticle azimuthal correlations in collisions

62 citations · 67 across the 3 of their papers we have counts for

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hep-ph2020

Chirality transfer & chiral turbulence in gauge theories

M. Mace, N. Mueller, S. Schlichting +1

Chirality transfer between fermions and gauge fields plays a crucial role for understanding the dynamics of anomalous transport phenomena such as the Chiral Magnetic Effect. In thi…

hep-ph2019

Gauge-invariant condensation in the nonequilibrium quark-gluon plasma

Jürgen Berges, Kirill Boguslavski, Mark Mace +1

The large density of gluons, which is present shortly after a nuclear collision at very high energies, can lead to the formation of a condensate. We identify a gauge-invariant orde…

hep-ph2019

Magnetic fields in heavy ion collisions: flow and charge transport

Gabriele Inghirami, Mark Mace, Yuji Hirono +3

At the earliest times after a heavy-ion collision, the magnetic field created by the spectator nucleons will generate an extremely strong, albeit rapidly decreasing in time, magnet…

hep-ph20192 cited

Initial state description of azimuthally collimated long range correlations in ultrarelativistic light-heavy ion collisions

Mark Mace, Vladimir V. Skokov, Prithwish Tribedy +1

It was argued in arXiv:1805.09342 and arXiv:1807.00825 that the systematics of the azimuthal anisotropy coefficients measured in ultrarelativistic light-heavy ion collisi…

hep-ph2018

Systematics of azimuthal anisotropy harmonics in proton-nucleus collisions at the LHC from the Color Glass Condensate

Mark Mace, Vladimir V. Skokov, Prithwish Tribedy +1

Simple power counting arguments in the dilute-dense framework of the Color Glass Condensate (CGC) Effective Field Theory predict that even and odd azimuthal anisotropy harmonics of…

hep-ph2018

Multiparticle correlations and collectivity in small systems from the initial state

Kevin Dusling, Mark Mace, Vladimir V. Skokov +2

We report on recent progress in understanding multiparticle correlations in small systems from the initial state. First, we consider a proof-of-principle parton model, which we use…