The direct measurement of the cosmic-ray spectrum, up to the knee region, is one of the instrumental challenges for next generation space experiments. The main issue for these measurements is a steeply falling spectrum with increasing energy, so the physics performance of the space calorimeters are primarily determined by their geometrical acceptance and energy resolution. CaloCube is a three-year R&D; project, approved and financed by INFN in 2014, aiming to optimize the design of a space-born calorimeter. The peculiarity of the design of CaloCube is its capability of detecting particles coming from any direction, and not only those on its upper surface. To ensure that the quality of the measurement does not depend on the arrival direction...
Measurements of high energy cosmic rays in the “knee” region (about 1015 eV) are currently available...
Current research in High Energy Cosmic Ray Physics touches on fundamental questions regarding the or...
Future research in High Energy Cosmic Ray Physics concerns fundamental questions on their origin, ac...
The direct measurement of the cosmic-ray spectrum, up to the knee region, is one of the instrumental...
The direct observation of high-energy cosmic rays, up to the PeV region, will increasingly rely on h...
In order to extend the direct observation of high-energy cosmic rays up to the PeV region, highly pe...
The direct observation of high-energy cosmic rays, up to the PeV energy region, will increasingly re...
The direct observation of high-energy cosmic rays, up to the PeV region, will depend on highly perfo...
The direct detection of high-energy cosmic rays up to the PeV region is one of the major challenges ...
CaloCube is an R&D project borne to develop a novel calorimeter design, optimized for high-energ...
The direct observation of high-energy cosmic rays, up to the PeV region, will depend on highly perfo...
Calorimeters are the key detectors for future space based experiments focused on high-energy cosmic ...
The direct observation of high-energy cosmic rays, up to the PeV region, will depend on highly perfo...
Measurements of high energy cosmic rays in the “knee” region (about 1015 eV) are currently available...
Current research in High Energy Cosmic Ray Physics touches on fundamental questions regarding the or...
Future research in High Energy Cosmic Ray Physics concerns fundamental questions on their origin, ac...
The direct measurement of the cosmic-ray spectrum, up to the knee region, is one of the instrumental...
The direct observation of high-energy cosmic rays, up to the PeV region, will increasingly rely on h...
In order to extend the direct observation of high-energy cosmic rays up to the PeV region, highly pe...
The direct observation of high-energy cosmic rays, up to the PeV energy region, will increasingly re...
The direct observation of high-energy cosmic rays, up to the PeV region, will depend on highly perfo...
The direct detection of high-energy cosmic rays up to the PeV region is one of the major challenges ...
CaloCube is an R&D project borne to develop a novel calorimeter design, optimized for high-energ...
The direct observation of high-energy cosmic rays, up to the PeV region, will depend on highly perfo...
Calorimeters are the key detectors for future space based experiments focused on high-energy cosmic ...
The direct observation of high-energy cosmic rays, up to the PeV region, will depend on highly perfo...
Measurements of high energy cosmic rays in the “knee” region (about 1015 eV) are currently available...
Current research in High Energy Cosmic Ray Physics touches on fundamental questions regarding the or...
Future research in High Energy Cosmic Ray Physics concerns fundamental questions on their origin, ac...