Large-area low-noise photon sensors with single-photon detection capability play a vital role for many detectors in astroparticle physics, such as neutrino telescopes. In conventional photo-multipliers scintillation light from radioactive decays typically dominates over the thermionic noise, both of which increase with the size of the photosensitive area. Using wavelength-shifting and light-guiding technologies, the Wavelength-shifting Optical Module (WOM) vastly increases the photo-sensitive area while keeping the dark noise rate constant. In a geometry geared towards future extensions of the IceCube neutrino observatory, more than 40% of the light is captured on tubes of 9cm diameter and 90cm length, thus increasing the signal-to-noise ra...
The IceCube Neutrino Observatory, located at the geographic South Pole, is the world’s largest neutr...
The light yield of a water-based Cherenkov detector can be significantly improved by adding a wavele...
Detection of high-energy neutrinos from distant astrophysical sources will open a new window on the ...
We report on the development status of a single-photon sensor that employs wavelength-shifting and l...
The Wavelength-shifting Optical Module (WOM) is a novel photosensor concept developed in thecontext ...
The Wavelength-shifting Optical Module (WOM) is a novel photosensor concept for the instrumentation ...
The Wavelength-shifting Optical Module (WOM) is a novel optical sensor that uses wavelength shifting...
Abstract: Large-scale underground water-Cherenkov neutrino observatories rely on single photon senso...
The IceCube optical modules are composed of a photomultiplier tube encapsulated in a glass sphere. T...
The IceCube neutrino observatory is composed of more than five thousand light sensors, Digi-tal Opti...
Following the first observation of an astrophysical high-energy neutrino flux with the IceCube Neutr...
Large-volume water-Cherenkov neutrino detectors are a light-starved environment, as each interaction...
This thesis provides a detailed study of the benefits of adding wavelength shifter molecules (WLS) t...
In the framework of a planned upgrade of the IceCube Neutrino Observatory and a next-generation neut...
Following the first observation of an astrophysical high-energy neutrino flux with the IceCubeobserv...
The IceCube Neutrino Observatory, located at the geographic South Pole, is the world’s largest neutr...
The light yield of a water-based Cherenkov detector can be significantly improved by adding a wavele...
Detection of high-energy neutrinos from distant astrophysical sources will open a new window on the ...
We report on the development status of a single-photon sensor that employs wavelength-shifting and l...
The Wavelength-shifting Optical Module (WOM) is a novel photosensor concept developed in thecontext ...
The Wavelength-shifting Optical Module (WOM) is a novel photosensor concept for the instrumentation ...
The Wavelength-shifting Optical Module (WOM) is a novel optical sensor that uses wavelength shifting...
Abstract: Large-scale underground water-Cherenkov neutrino observatories rely on single photon senso...
The IceCube optical modules are composed of a photomultiplier tube encapsulated in a glass sphere. T...
The IceCube neutrino observatory is composed of more than five thousand light sensors, Digi-tal Opti...
Following the first observation of an astrophysical high-energy neutrino flux with the IceCube Neutr...
Large-volume water-Cherenkov neutrino detectors are a light-starved environment, as each interaction...
This thesis provides a detailed study of the benefits of adding wavelength shifter molecules (WLS) t...
In the framework of a planned upgrade of the IceCube Neutrino Observatory and a next-generation neut...
Following the first observation of an astrophysical high-energy neutrino flux with the IceCubeobserv...
The IceCube Neutrino Observatory, located at the geographic South Pole, is the world’s largest neutr...
The light yield of a water-based Cherenkov detector can be significantly improved by adding a wavele...
Detection of high-energy neutrinos from distant astrophysical sources will open a new window on the ...