<div><p>The uncertainty in time of particle detection within a scintillator detector, characterised by the coinci- dence time resolution (CTR), is explored with respect to the interaction position within the scintillator crystal itself. Electronic collimation between two scintillator detectors is utilised to determine the CTR with depth of interaction (DOI) for different materials, geometries and wrappings. Significantly, no rela- tionship between the CTR and DOI is observed within experimental error. Confinement of the interaction position is seen to degrade the CTR in long scintillator crystals by 10%.</p></div
Coincidence time resolution (CTR) of scintillation detectors based on Ce- and Mg-codoped Gd3Al2Ga3O1...
Highest time resolution in scintillator based detectors is becoming more and more important in appli...
Gamma-ray detectors based on bright monolithic scintillation crystals coupled to pixelated photodete...
The uncertainty in time of particle detection within a scintillator detector, characterised by the c...
The uncertainty in time of particle detection within a scintillator detector, characterised by the c...
A Monte Carlo simulation of a 50mm×50mm×4mm continuous crystal has been developed to investigate the...
<p>The two timing coincidence apparatuses. In (a) the standard coincidence apparatus, used in this p...
Highest time resolution in scintillator based detectors is becoming more and more important. In medi...
Current developments in positron emission tomography focus on improving timing performance for scann...
<p>The coincidence time resolution is plotted versus the depth of interaction for three configuratio...
AbstractHighest time resolution in scintillator based detectors is becoming more and more important....
The spread in time resolution of scintillation detectors is studied versus the thresholds of the ele...
We characterize the nature of the time dispersion in scintillation detectors caused by path length d...
Depth-of-interaction (DOI) PET detectors possess three-dimensional information on the interaction po...
We have developed four-layered depth-of-interaction (DOI) detectors based on light sharing. Reflecto...
Coincidence time resolution (CTR) of scintillation detectors based on Ce- and Mg-codoped Gd3Al2Ga3O1...
Highest time resolution in scintillator based detectors is becoming more and more important in appli...
Gamma-ray detectors based on bright monolithic scintillation crystals coupled to pixelated photodete...
The uncertainty in time of particle detection within a scintillator detector, characterised by the c...
The uncertainty in time of particle detection within a scintillator detector, characterised by the c...
A Monte Carlo simulation of a 50mm×50mm×4mm continuous crystal has been developed to investigate the...
<p>The two timing coincidence apparatuses. In (a) the standard coincidence apparatus, used in this p...
Highest time resolution in scintillator based detectors is becoming more and more important. In medi...
Current developments in positron emission tomography focus on improving timing performance for scann...
<p>The coincidence time resolution is plotted versus the depth of interaction for three configuratio...
AbstractHighest time resolution in scintillator based detectors is becoming more and more important....
The spread in time resolution of scintillation detectors is studied versus the thresholds of the ele...
We characterize the nature of the time dispersion in scintillation detectors caused by path length d...
Depth-of-interaction (DOI) PET detectors possess three-dimensional information on the interaction po...
We have developed four-layered depth-of-interaction (DOI) detectors based on light sharing. Reflecto...
Coincidence time resolution (CTR) of scintillation detectors based on Ce- and Mg-codoped Gd3Al2Ga3O1...
Highest time resolution in scintillator based detectors is becoming more and more important in appli...
Gamma-ray detectors based on bright monolithic scintillation crystals coupled to pixelated photodete...