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H.E.S.S. observations of the 2021 periastron passage of PSRB1259-63/LS2883

dc.contributor.authorH.E.S.S. Collaborationen.ZA
dc.contributor.authorMartins, V. Barbosaen.ZA
dc.contributor.authorBatzofin, Ren.ZA
dc.contributor.authorBecherini, Yen.ZA
dc.contributor.authorBerge, Den.ZA
dc.contributor.authorBernlöhr, Ken.ZA
dc.contributor.authorBöttcher, Men.ZA
dc.contributor.researchID24420530en.ZA
dc.date.accessioned2025-11-12T10:46:38Zen.ZA
dc.date.issued2024en.ZA
dc.descriptionJournal Article, Faculty of Natural and Agricultural Sciences, Centre for Space Research (CSR)-- Potchefstroom Campusen.ZA
dc.description.abstractPSR B1259-63/LS 2883 is a gamma-ray binary system that hosts a pulsar in an eccentric orbit, with a 3.4 year period, around an O9.5Ve star (LS 2883). At orbital phases close to periastron passages, the system radiates bright and variable non-thermal emission, for which the temporal and spectral properties of this emission are, for now, poorly understood. In this regard, very high-energy (VHE) emission is especially useful to study and constrain radiation processes and particle acceleration in the system. We report on an extensive VHE observation campaign conducted with the High Energy Stereoscopic System, comprised of approximately 100 hours of data taken over five months, from tp − 24 days to tp + 127 days around the system's 2021 periastron passage (where tp is the time of periastron). We also present the timing and spectral analyses of the source. The VHE light curve in 2021 is consistent overall with the stacked light curve of all previous observations. Within the light curve, we report a VHE maximum at times coincident with the third X-ray peak first detected in the 2021 X-ray light curve. In the light curve - although sparsely sampled in this time period - we see no VHE enhancement during the second disc crossing. In addition, we see no correspondence to the 2021 GeV flare in the VHE light curve. The VHE spectrum obtained from the analysis of the 2021 dataset is best described by a power law of spectral index Γ = 2.65 ± 0.04stat ± 0.04sys, a value consistent with the spectral index obtained from the analysis of data collected with H.E.S.S. during the previous observations of the source. We report spectral variability with a difference of ∆Γ = 0.56 ± 0.18stat ± 0.10sys at 95% confidence intervals, between sub-periods of the 2021 dataset. We also detail our investigation into X-ray/TeV and GeV/TeV flux correlations in the 2021 periastron passage. We find a linear correlation between contemporaneous flux values of X-ray and TeV datasets, detected mainly after tp + 25 days, suggesting a change in the available energy for non-thermal radiation processes. We detect no significant correlation between GeV and TeV flux points, within the uncertainties of the measurements, from ∼ tp − 23 days to ∼ tp + 126 days. This suggests that the GeV and TeV emission originate from different electron populations.en.ZA
dc.description.sponsorshipAcknowledgements The support of the Namibian authorities and of the University of Namibia in facilitating the construction and operation of H.E.S.S. is gratefully acknowledged, as is the support by the German Ministry for Education and Research (BMBF), the Max Planck Society, the Helmholtz Association, the French Ministry of Higher Education, Research and Innovation, the Centre National de la Recherche Scientifique (CNRS/IN2P3 and CNRS/INSU), the Commissariat à l’énergie atomique et aux énergies alternatives (CEA), the U.K. Science and Technology Facilities Council (STFC), the Irish Research Council (IRC) and the Science Foundation Ireland (SFI), the Polish Ministry of Education and Science, agreement no. 2021/WK/06, the South African Department of Science and Innovation and National Research Foundation, the University of Namibia, the National Commission on Research, Science & Technology of Namibia (NCRST), the Austrian Federal Ministry of Education, Science and Research and the Austrian Science Fund (FWF), the Australian Research Council (ARC), the Japan Society for the Promotion of Science, the University of Amsterdam and the Science Committee of Armenia grant 21AG-1C085. We appreciate the excellent work of the technical support staff in Berlin, Zeuthen, Heidelberg, Palaiseau, Paris, Saclay, Tübingen and in Namibia in the construction and operation of the equipment. This work benefited from services provided by the H.E.S.S. Virtual Organisation, supported by the national resource providers of the EGI Federation.en.ZA
dc.identifier.citationH.E.S.S. observations of the 2021 periastron passage of PSRB1259-63/LS2883. Astronomy & Astrophysics manuscript, (2024), [https://doi.org/10.48550/arXiv.2406.18167]en.ZA
dc.identifier.urihttps://doi.org/10.48550/arXiv.2406.18167en.ZA
dc.identifier.urihttp://hdl.handle.net/10394/44012en.ZA
dc.language.isoenen.ZA
dc.publisherAstronomy & Astrophysicsen.ZA
dc.titleH.E.S.S. observations of the 2021 periastron passage of PSRB1259-63/LS2883en.ZA
dc.typeArticleen.ZA

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