The high refractive index of current scintillating materials puts severe restrictions on their effective light yield. In this paper, we describe an approach that uses a photonic crystal pattern machined into the coupling face of the scintillator to partly overcome the problem of total internal reflection. Simulations are performed for 2 mm times 2 mm times 8 mm LuAP and LSO pixels with and without photonic crystal and different types of wrapping. It is shown that by tuning the structure of the photonic crystal and the size of its elements, the extraction efficiency of the surface can be significantly improved compared to a plain exit surface
“Photonic Crystals (PhC)” have been used in a variety of fields as a structure for improving the lig...
It is important to optimize the crystal-photodetector coupling for gamma detection since it improves...
The influence of the geometry of the scintillators is presented in this paper. We focus on the effec...
A scintillator is a material which emits light when excited by ionizing radiation. Such materials ar...
The impact of photonic crystal (PhC) slabs on the light extraction from heavy inorganic scintillator...
Heavy inorganic scintillator based detectors are used in various applications. You can find them in ...
Inorganic scintillators are commonly used as sensors for ionizing radiation detectors in a variety o...
Future high-energy physics (HEP) experiments as well as next generation medical imaging applications...
Inorganic crystal scintillators are widely used in radiation detectors in various fields, from high ...
Inorganic scintillators are widely used in modern medical imaging modalities as converter for the X-...
Photonic crystals (PhCs) are optical materials which can affect the propagation of light in multiple...
The renewal of interest for Time of Flight Positron Emission Tomography (TOF PET) has highlighted th...
Copyright © 2014 M. F. Eissa, Arafa H. Aly. This is an open access article distributed under the Cre...
The extraction of scintillation light from a crystal with high efficiency and low time jitter is vit...
Scintillating crystals are used in numerous applications of ionizing radiation detectors. In time of...
“Photonic Crystals (PhC)” have been used in a variety of fields as a structure for improving the lig...
It is important to optimize the crystal-photodetector coupling for gamma detection since it improves...
The influence of the geometry of the scintillators is presented in this paper. We focus on the effec...
A scintillator is a material which emits light when excited by ionizing radiation. Such materials ar...
The impact of photonic crystal (PhC) slabs on the light extraction from heavy inorganic scintillator...
Heavy inorganic scintillator based detectors are used in various applications. You can find them in ...
Inorganic scintillators are commonly used as sensors for ionizing radiation detectors in a variety o...
Future high-energy physics (HEP) experiments as well as next generation medical imaging applications...
Inorganic crystal scintillators are widely used in radiation detectors in various fields, from high ...
Inorganic scintillators are widely used in modern medical imaging modalities as converter for the X-...
Photonic crystals (PhCs) are optical materials which can affect the propagation of light in multiple...
The renewal of interest for Time of Flight Positron Emission Tomography (TOF PET) has highlighted th...
Copyright © 2014 M. F. Eissa, Arafa H. Aly. This is an open access article distributed under the Cre...
The extraction of scintillation light from a crystal with high efficiency and low time jitter is vit...
Scintillating crystals are used in numerous applications of ionizing radiation detectors. In time of...
“Photonic Crystals (PhC)” have been used in a variety of fields as a structure for improving the lig...
It is important to optimize the crystal-photodetector coupling for gamma detection since it improves...
The influence of the geometry of the scintillators is presented in this paper. We focus on the effec...