Lower bounds on scintillation detector timing performance
نویسندگان
چکیده
Fundamental method-independent linuts on the timing performance of scintillation detectors are useful for identifying regimes in which either present timing methods are nearly optimal or where a considerable performance gain might be realized using better pulse processing techniques . Several types of lower bounds on mean-squared timing error (MSE) performance have been developed and applied to scintillation detectors. The simple Cramèr-Rao (CR) bound can be useful in determining the limiting MSE for scmtillators having a relatively high rate of photon production such as BaF2 and Nal(Tl) ; however, it tends to overestimate the achievable performance for scintillators with lower rates such as BGO. For thus reason, alternative bounds have been developed using rate-distortion theory [1,2] or by assuring that the conversion of energy to scintillation light must pass through excited states which have exponential lifetime densities [3]. The bounds are functions of the mean scintillation pulse shape, the scintillation intensity, and photodetector characteristics; they are simple to evaluate and can be used to conveniently assess the limiting tiring performance of scintillation detectors.
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