Nuclear modification factor of neutral pions in the forward and backward regions in $p$-Pb collisions
LHCb collaboration: R. Aaij, A.S.W. Abdelmotteleb, C. Abellan Beteta,, F. Abudin\'en, T. Ackernley, B. Adeva, M. Adinolfi, H. Afsharnia, C., Agapopoulou, C.A. Aidala, S. Aiola, Z. Ajaltouni, S. Akar, K. Akiba, J., Albrecht, F. Alessio, M. Alexander, A. Alfonso Albero

TL;DR
This paper measures the nuclear modification factor of neutral pions in proton-lead collisions at the LHC, revealing suppression in the forward region and enhancement in the backward region, thus constraining nuclear models.
Contribution
It provides the first evidence of $bc^0$ enhancement in the backward region and detailed differential measurements at 8.16 TeV, improving understanding of nuclear effects in high-energy collisions.
Findings
Sizable suppression of $bc^0$ in the forward region.
First evidence of $bc^0$ enhancement in the backward region.
Precise differential cross section measurements at 8.16 TeV.
Abstract
The nuclear modification factor of neutral pions is measured in proton-lead collisions collected at a center-of-mass energy per nucleon of with the LHCb detector. The production cross section is measured differentially in transverse momentum () for and in center-of-mass pseudorapidity () regions (forward) and (backward) defined relative to the proton beam direction. The forward measurement shows a sizable suppression of production, while the backward measurement shows the first evidence of enhancement in proton-lead collisions at the LHC. Together, these measurements provide precise constraints on models of nuclear structure and particle production in high-energy nuclear collisions.
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