Atmospheric conditions, such as the pressure (P), temperature (T) or air density ($\rho \propto P/T$), affect the development of extended air showers initiated by energetic cosmic rays. We study the impact of the atmospheric variations on the reconstruction of air showers with data from the arrays of surface detectors of the Pierre Auger Observatory, considering separately the one with detector spacings of 1500 m and the one with 750 m spacing. We observe modulations in the event rates that are due to the influence of the air density and pressure variations on the measured signals, from which the energy estimators are obtained. We show how the energy assignment can be corrected to account for such atmospheric effects.Peer Reviewe
We report a study of the distributions of the depth of maximum, X-max, of extensive air-shower profi...
The observation of ultrahigh energy neutrinos (UHEs) has become a priority in experimental astropart...
Simultaneous measurements of air showers with the fluorescence and surface detectors of the Pierre A...
Atmospheric conditions, such as the pressure (P), temperature (T) or air density (rho proportional t...
Atmospheric parameters, such as pressure (P), temperature (T) and density, affect the development of...
Atmospheric parameters, such as pressure (P), temperature (T) and density (ρ ∝ P/T), affect the deve...
The air fluorescence detector of the Pierre Auger Observatory is designed to perform calorimetric me...
We describe the method devised to reconstruct inclined cosmic-ray air showers with zenith angles gre...
We describe the method devised to reconstruct inclined cosmic-ray air showers with zenith angles gre...
We report a first measurement for ultrahigh energy cosmic rays of the correlation between the depth ...
The determination of the primary energy of extensive air showers using the uorescence detection tech...
The observation of ultrahigh energy neutrinos (UHEvs) has become a priority in experimental astropar...
The surface detector array of the Pierre Auger Observatory provides information about the longitudin...
The surface detector array of the Pierre Auger Observatory provides information about the longitudin...
We report a study of the distributions of the depth of maximum, X-max, of extensive air-shower profi...
The observation of ultrahigh energy neutrinos (UHEs) has become a priority in experimental astropart...
Simultaneous measurements of air showers with the fluorescence and surface detectors of the Pierre A...
Atmospheric conditions, such as the pressure (P), temperature (T) or air density (rho proportional t...
Atmospheric parameters, such as pressure (P), temperature (T) and density, affect the development of...
Atmospheric parameters, such as pressure (P), temperature (T) and density (ρ ∝ P/T), affect the deve...
The air fluorescence detector of the Pierre Auger Observatory is designed to perform calorimetric me...
We describe the method devised to reconstruct inclined cosmic-ray air showers with zenith angles gre...
We describe the method devised to reconstruct inclined cosmic-ray air showers with zenith angles gre...
We report a first measurement for ultrahigh energy cosmic rays of the correlation between the depth ...
The determination of the primary energy of extensive air showers using the uorescence detection tech...
The observation of ultrahigh energy neutrinos (UHEvs) has become a priority in experimental astropar...
The surface detector array of the Pierre Auger Observatory provides information about the longitudin...
The surface detector array of the Pierre Auger Observatory provides information about the longitudin...
We report a study of the distributions of the depth of maximum, X-max, of extensive air-shower profi...
The observation of ultrahigh energy neutrinos (UHEs) has become a priority in experimental astropart...
Simultaneous measurements of air showers with the fluorescence and surface detectors of the Pierre A...