Aims. Colliding wind binary systems have long been suspected to be high-energy (HE; 100 MeV 100 GeV) γ-ray emission from η Car around the last periastron passage in 2014 with the ground-based High Energy Stereoscopic System (H.E.S.S.). Methods. The region around η Car was observed with H.E.S.S. between orbital phase p = 0.78−1.10, with a closer sampling at p ≈ 0.95 and p ≈ 1.10 (assuming a period of 2023 days). Optimised hardware settings as well as adjustments to the data reduction, reconstruction, and signal selection were needed to suppress and take into account the strong, extended, and inhomogeneous night sky background (NSB) in the η Car field of view. Tailored run-wise Monte-Carlo simulations (RWS) were required to accurately treat ...
Aims. Colliding wind binary systems have long been suspected to be high-energy (HE; 100 MeV 100 GeV)...
Aims. Colliding wind binary systems have long been suspected to be high-energy (HE; 100 MeV 100 GeV)...
Aims. Colliding wind binary systems have long been suspected to be high-energy (HE; 100 MeV 100 GeV)...
Aims. Colliding wind binary systems have long been suspected to be high-energy (HE; 100 MeV 100 GeV)...
Aims. Colliding wind binary systems have long been suspected to be high-energy (HE; 100 MeV 100 GeV)...
Aims. Colliding wind binary systems have long been suspected to be high-energy (HE; 100 MeV 100 GeV)...
Aims. Colliding wind binary systems have long been suspected to be high-energy (HE; 100 MeV 100 GeV)...
Aims. Colliding wind binary systems have long been suspected to be high-energy (HE; 100 MeV 100 GeV)...
Aims. Colliding wind binary systems have long been suspected to be high-energy (HE; 100 MeV 100 GeV)...
Aims. Colliding wind binary systems have long been suspected to be high-energy (HE; 100 MeV 100 GeV)...
Aims. Colliding wind binary systems have long been suspected to be high-energy (HE; 100 MeV 100 GeV)...