The IceCube Neutrino Observatory observes neutrinos interacting deep within the South Pole ice. It consists of 5,160 digital optical modules, which are embedded within a cubic kilometer of ice, over depths of 1,450 m to 2,450 m. At the lower center of the array is the DeepCore subdetector. Its denser sensor configuration lowers the observable energy threshold to the GeV-scale, facilitating the study of atmospheric neutrino oscillations. The precise reconstruction of neutrino direction is critical in the measurements of oscillation parameters. This work presents a method to reconstruct the zenith angle of GeV-scale events in IceCube by using a convolutional neural network and compares the result to that of the current likelihood-based recons...
The Jiangmen Underground Neutrino Observation (JUNO) experiment is designed to measure the neutrino ...
The reconstruction of neutrino events in the IceCube experiment is crucial for many scientific analy...
Extremely high energy astrophysical neutrinos are essential to modern day multimessenger astronomy, ...
The IceCube Neutrino Observatory observes neutrinos interacting deep within the South Pole ice. It c...
The IceCube Neutrino Observatory instruments a cubic kilometer of ice at the South Pole to detect at...
Measurements of neutrinos at and below 10 GeV provide unique constraints of neutrino oscillation par...
The IceCube Neutrino Observatory consists of 5,160 digital optical modules, which are deployed over ...
Ultra-high-energy (UHE) neutrinos (> 1016 eV) can be measured cost-effectively using in-ice radio...
The IceCube Neutrino Observatory is a cubic-kilometer scale neutrino detector embedded in the Antarc...
Continued improvements on existing reconstruction methods are vital to the success of high-energy ph...
Reliable and accurate reconstruction methods are vital to the success of high-energy physics experim...
IceCube, a cubic-kilometer array of optical sensors built to detect atmospheric and astrophysical ne...
IceCube, a cubic-kilometer array of optical sensors built to detect atmospheric and astrophysical ne...
Neutrinos are the perfect cosmic messengers when it comes to investigating the most violent and myst...
AbstractWith its low-energy extension DeepCore, the IceCube Neutrino Observatory at the Amundsen-Sco...
The Jiangmen Underground Neutrino Observation (JUNO) experiment is designed to measure the neutrino ...
The reconstruction of neutrino events in the IceCube experiment is crucial for many scientific analy...
Extremely high energy astrophysical neutrinos are essential to modern day multimessenger astronomy, ...
The IceCube Neutrino Observatory observes neutrinos interacting deep within the South Pole ice. It c...
The IceCube Neutrino Observatory instruments a cubic kilometer of ice at the South Pole to detect at...
Measurements of neutrinos at and below 10 GeV provide unique constraints of neutrino oscillation par...
The IceCube Neutrino Observatory consists of 5,160 digital optical modules, which are deployed over ...
Ultra-high-energy (UHE) neutrinos (> 1016 eV) can be measured cost-effectively using in-ice radio...
The IceCube Neutrino Observatory is a cubic-kilometer scale neutrino detector embedded in the Antarc...
Continued improvements on existing reconstruction methods are vital to the success of high-energy ph...
Reliable and accurate reconstruction methods are vital to the success of high-energy physics experim...
IceCube, a cubic-kilometer array of optical sensors built to detect atmospheric and astrophysical ne...
IceCube, a cubic-kilometer array of optical sensors built to detect atmospheric and astrophysical ne...
Neutrinos are the perfect cosmic messengers when it comes to investigating the most violent and myst...
AbstractWith its low-energy extension DeepCore, the IceCube Neutrino Observatory at the Amundsen-Sco...
The Jiangmen Underground Neutrino Observation (JUNO) experiment is designed to measure the neutrino ...
The reconstruction of neutrino events in the IceCube experiment is crucial for many scientific analy...
Extremely high energy astrophysical neutrinos are essential to modern day multimessenger astronomy, ...