AbstractThe longitudinal development of an extensive air shower reaches its maximum at a depth, Xmax, that depends on the species of the primary cosmic ray. Using a technique based on Xmax, we measure the cosmic-ray mass composition from analyses of 3.7 years of monocular mode operations with the newly constructed fluorescence detectors of the Telescope Array experiment. The Xmax analysis shows our data to be consistent with a proton dominant composition at energies above 1018.0eV
Abstract: The Pierre Auger Observatory has been collecting data in a stable manner since January 200...
The Telescope Array (TA) observatory utilizes fluorescence detectors and surface detectors (SDs) to ...
We report on studies of the composition of ultra high energy cosmic rays with the Pierre Auger Obser...
AbstractThe longitudinal development of an extensive air shower reaches its maximum at a depth, Xmax...
Abstract: Results from the TA mass composition studies are reviewed. From the analysis of longitudin...
In order to clarify the origin of ultra high energy cosmic rays (UHECRs), it is very important to de...
Telescope Array (TA) has completed analysis of nearly nine years of data measuring the atmospheric d...
Abstract. In order to clarify the origin of ultra high energy cosmic rays (UHECRs), it is very impor...
We present a summary of the measurements of mass sensitive parameters at the highest cosmic ray ener...
Abstract. We present a summary of the measurements of mass sensitive pa-rameters at the highest cosm...
Telescope Array (TA) has recently published results of nearly nine years of Xmax observations provid...
Ultra high energy cosmic ray (UHECR) chemical composition is important to resolving questions about ...
We present an updated cosmic-ray mass composition analysis in the energy range 1016.8 to 1018.3 eV f...
The results on ultrahigh-energy cosmic rays (UHECR) mass composition obtained with the Telescope Arr...
We report a first measurement for ultrahigh energy cosmic rays of the correlation between the depth ...
Abstract: The Pierre Auger Observatory has been collecting data in a stable manner since January 200...
The Telescope Array (TA) observatory utilizes fluorescence detectors and surface detectors (SDs) to ...
We report on studies of the composition of ultra high energy cosmic rays with the Pierre Auger Obser...
AbstractThe longitudinal development of an extensive air shower reaches its maximum at a depth, Xmax...
Abstract: Results from the TA mass composition studies are reviewed. From the analysis of longitudin...
In order to clarify the origin of ultra high energy cosmic rays (UHECRs), it is very important to de...
Telescope Array (TA) has completed analysis of nearly nine years of data measuring the atmospheric d...
Abstract. In order to clarify the origin of ultra high energy cosmic rays (UHECRs), it is very impor...
We present a summary of the measurements of mass sensitive parameters at the highest cosmic ray ener...
Abstract. We present a summary of the measurements of mass sensitive pa-rameters at the highest cosm...
Telescope Array (TA) has recently published results of nearly nine years of Xmax observations provid...
Ultra high energy cosmic ray (UHECR) chemical composition is important to resolving questions about ...
We present an updated cosmic-ray mass composition analysis in the energy range 1016.8 to 1018.3 eV f...
The results on ultrahigh-energy cosmic rays (UHECR) mass composition obtained with the Telescope Arr...
We report a first measurement for ultrahigh energy cosmic rays of the correlation between the depth ...
Abstract: The Pierre Auger Observatory has been collecting data in a stable manner since January 200...
The Telescope Array (TA) observatory utilizes fluorescence detectors and surface detectors (SDs) to ...
We report on studies of the composition of ultra high energy cosmic rays with the Pierre Auger Obser...