Measurement of the nuclear modification factor and prompt charged particle production in $p\mathrm{Pb}$ and $pp$ collisions at $\sqrt{s_{\scriptscriptstyle\mathrm{NN}}}=5\,\mathrm{TeV}$
LHCb collaboration: R. Aaij, C. Abell\'an Beteta, T. Ackernley, B., Adeva, M. Adinolfi, H. Afsharnia, C.A. Aidala, S. Aiola, Z. Ajaltouni, S., Akar, J. Albrecht, F. Alessio, M. Alexander, A. Alfonso Albero, Z. Aliouche,, G. Alkhazov, P. Alvarez Cartelle, S. Amato, J.L. Amey

TL;DR
This paper measures how proton-lead and proton-proton collisions produce charged particles at the LHC, revealing nuclear effects that vary with angle and momentum, and providing data to refine nuclear parton distribution models.
Contribution
It provides the first detailed measurement of the nuclear modification factor for charged particles at 5 TeV across a wide pseudorapidity and transverse momentum range.
Findings
Suppression of charged particles in forward proton-lead collisions.
Enhancement of charged particles in backward proton-lead collisions.
Constraints on nuclear PDFs and saturation models at low parton momentum fractions.
Abstract
The production of prompt charged particles in proton-lead collisions and in proton-proton collisions at the nucleon-nucleon centre-of-mass energy is studied at LHCb as a function of pseudorapidity () and transverse momentum () with respect to the proton beam direction. The nuclear modification factor for charged particles is determined as a function of between (backward region) and (forward region), and between . The results show a suppression of charged particle production in proton-lead collisions relative to proton-proton collisions in the forward region and an enhancement in the backward region for larger than . This measurement constrains nuclear PDFs and…
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