The atmospheric depth of the air shower maximum Xmax is an observable commonly used for the determination of the nuclear mass composition of ultra-high energy cosmic rays. Direct measurements of Xmax are performed using observations of the longitudinal shower development with fluorescence telescopes. At the same time, several methods have been proposed for an indirect estimation of Xmax from the characteristics of the shower particles registered with surface detector arrays. In this paper, we present a deep neural network (DNN) for the estimation of Xmax. The reconstruction relies on the signals induced by shower particles in the ground based water-Cherenkov detectors of the Pierre Auger Observatory. The network architecture features recurr...
The principle of air-shower universality yields a method of understanding extensive air showers of U...
We describe the measurement of the depth of maximum, X-max, of the longitudinal development of air s...
The Fluorescence Detector of the Pierre Auger Observatory measures the atmospheric depth, $X_{max}$,...
The atmospheric depth of the air shower maximum Xmax is an observable commonly used for the determin...
The atmospheric depth of the air shower maximum Xmax is an observable commonly used for the determin...
International audienceThe atmospheric depth of the air shower maximum X max is an observable commonl...
The measurement of the mass composition of ultra-high energy cosmic rays constitutes a prime challen...
To probe physics beyond the scales of human-made accelerators with cosmic rays demands an accurate k...
Contains fulltext : 236313.pdf (Publisher’s version ) (Open Access
Ultra-high energy cosmic rays (UHECRs) are the most energetic particles found in nature. The search ...
We present a new method to explore simple ad-hoc adjustments to the predictions of hadronic interact...
The principle of air-shower universality yields a method of understanding extensive air showers of U...
We describe the measurement of the depth of maximum, X-max, of the longitudinal development of air s...
The Fluorescence Detector of the Pierre Auger Observatory measures the atmospheric depth, $X_{max}$,...
The atmospheric depth of the air shower maximum Xmax is an observable commonly used for the determin...
The atmospheric depth of the air shower maximum Xmax is an observable commonly used for the determin...
International audienceThe atmospheric depth of the air shower maximum X max is an observable commonl...
The measurement of the mass composition of ultra-high energy cosmic rays constitutes a prime challen...
To probe physics beyond the scales of human-made accelerators with cosmic rays demands an accurate k...
Contains fulltext : 236313.pdf (Publisher’s version ) (Open Access
Ultra-high energy cosmic rays (UHECRs) are the most energetic particles found in nature. The search ...
We present a new method to explore simple ad-hoc adjustments to the predictions of hadronic interact...
The principle of air-shower universality yields a method of understanding extensive air showers of U...
We describe the measurement of the depth of maximum, X-max, of the longitudinal development of air s...
The Fluorescence Detector of the Pierre Auger Observatory measures the atmospheric depth, $X_{max}$,...