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An excess of J/ψ yield at very low transverse momentum (pT<0.3 GeV/c), originating from coherent photoproduction, is observed in peripheral and semicentral hadronic Pb–Pb collisions at a center-of-mass energy per nucleon pair of sNN=5.02 TeV. The measurement is performed with the ALICE detector via the dimuon decay channel at forward rapidity (2.5<y<4). The nuclear modification factor at very low pT and the coherent photoproduction cross section are measured as a function of centrality down to the 10% most central collisions. These results extend the previous study at sNN=2.76 TeV, confirming the clear excess over hadronic production in the pT range 0−0.3 GeV/c and the centrality range 70–90%, and establishing an excess with a significance greater than 5σ also in the 50–70% and 30–50% centrality ranges. The results are compared with earlier measurements at sNN=2.76 TeV and with different theoretical predictions aiming at describing how coherent photoproduction occurs in hadronic interactions with nuclear overlap.
An excess of J/ψ yield at very low transverse momentum (pT<0.3 GeV/c), originating from coherent photoproduction, is observed in peripheral and semicentral hadronic Pb−Pb collisions at a center-of-mass energy per nucleon pair of sNN−−−√=5.02 TeV. The measurement is performed with the ALICE detector via the dimuon decay channel at forward rapidity (2.5<y<4). The nuclear modification factor at very low pT and the coherent photoproduction cross section are measured as a function of centrality down to the 10% most central collisions. These results extend the previous study at sNN−−−√=2.76 TeV, confirming the clear excess over hadronic production in the pT range 0−0.3 GeV/c and the centrality range 70−90%, and establishing an excess with a significance greater than 5σ also in the 50−70% and 30−50% centrality ranges. The results are compared with earlier measurements at sNN−−−√=2.76 TeV and with different theoretical predictions aiming at describing how coherent photoproduction occurs in hadronic interactions with nuclear overlap.
W±-boson production in p–Pb collisions at √sNN = 8.16 TeV and Pb–Pb collisions at √sNN = 5.02 TeV
(2023)
The production of the W± bosons measured in p−Pb collisions at a centre-of-mass energy per nucleon−nucleon collision sNN−−−−√=8.16 TeV and Pb−Pb collisions at √sNN=5.02 TeV with ALICE at the LHC is presented. The W± bosons are measured via their muonic decay channel, with the muon reconstructed in the pseudorapidity region −4<ημlab<−2.5 with transverse momentum pμT>10 GeV/c. While in Pb−Pb collisions the measurements are performed in the forward (2.5<yμcms<4) rapidity region, in p−Pb collisions, where the centre-of-mass frame is boosted with respect to the laboratory frame, the measurements are performed in the backward (−4.46<yμcms<−2.96) and forward (2.03<yμcms<3.53) rapidity regions. The W− and W+ production cross sections, lepton-charge asymmetry, and nuclear modification factors are evaluated as a function of the muon rapidity. In order to study the production as a function of the p−Pb collision centrality, the production cross sections of the W− and W+ bosons are combined and normalised to the average number of binary nucleon−nucleon collision ⟨Ncoll⟩. In Pb−Pb collisions, the same measurements are presented as a function of the collision centrality. Study of the binary scaling of the W±-boson cross sections in p−Pb and Pb−Pb collisions is also reported. The results are compared with perturbative QCD (pQCD) calculations, with and without nuclear modifications of the Parton Distribution Functions (PDFs), as well as with available data at the LHC. Significant deviations from the theory expectations are found in the two collision systems, indicating that the measurements can provide additional constraints for the determination of nuclear PDF (nPDFs) and in particular of the light-quark distributions.
Der eurozentrische Blick des 18. und 19. Jahrhunderts, den es hier zu untersuchen gilt, definiert und interpretiert das Wahrgenommene über vergleichende Studien. Stets steht eine Differenz in der Subjekt-Objekt Beziehung zwischen Beobachtendem und Wahrgenommenem. Dies gelingt am ehesten, wenn das Objekt der Betrachtung abstrahiert und verallgemeinert und zugleich aus einer sicher wirkenden Distanz beschrieben wird. Beschreibungen von Menschen verschiedener Herkunft basieren auf Vergleichen, deren Kriterien die Untersuchungsergebnisse von vornherein festlegen. Sie fokussieren sich auf Körpermerkmale und deren unterstellte Einflüsse auf intellektuelle und kulturelle Entwicklungsmöglichkeiten. Sie betrachten gesellschaftliche Strukturen und ziehen daraus ihre verallgemeinernden Schlüsse. Solche Untersuchungen entstehen auf unterschiedlichen Ebenen: Im bildungsbürgerlichen Haushalt finden sich populärwissenschaftliche Publikationen wie Lexika für Erwachsene und Kinder. Die sich etablierende Anthropologie bedient sich ebenfalls der Vergleichsmodelle in der Beschreibung des Andersseins. Versuche, die Perspektive zu ändern und einen kulturellen Transfer überhaupt erst zu denken, lenken den Blick auf ein weiteres wichtiges Phänomen der Wahrnehmung in Selbsterkenntnis. Als Quellentexte und Anschauungsmaterialien sind solche Publikationen zusammengestellt, in welchen die Differenz zwischen Europäer:innen und Afrikaner:innen herausgearbeitet wird. Der afrikanische Kontinent gewinnt im 19. Jahrhundert zunehmend an Bedeutung. Das Innere des Kontinents lockt Forschungsreisende, Missionare und später Kolonialmächte an. Aus den Begegnungen und Beschreibungen leiten sich nicht nur Bilder, sondern zugleich Argumentationslinien für europäische Handlungsstrategien ab, die bis heute nachwirken.