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1.
Appl Radiat Isot ; 164: 109231, 2020 Oct.
Article in English | MEDLINE | ID: mdl-32554122

ABSTRACT

Activity measurements of 3H, 241Am and 60Co solutions were performed to compare digital coincidence modules used at PTB and POLATOM for TDCR and 4πß(LS)-γ coincidence counting. The activities determined with various coincidence modules connected in parallel to the same counter at PTB were found to be consistent. Observed discrepancies caused by differences in the coincidence resolving time did not exceed 0.14%. Accidental coincidences simulated by a frequency generator were registered, and the coincidence resolving time was determined.

2.
Appl Radiat Isot ; 86: 7-12, 2014 Apr.
Article in English | MEDLINE | ID: mdl-24457420

ABSTRACT

In the past few years, two Cerenkov methods were developed to make activity measurements of high-energy beta emitters in liquid scintillation counters with two or three photomultiplier tubes (PMTs) possible. Both methods are based on a free parameter model and make use of the Frank and Tamm theory for the emission of Cerenkov light. In this article, additional effects are discussed and further improvements are presented. The dependence of the refractive index of water on the wavelength can now be taken into account, which has also an influence on the upper limit of the wavelength region for the production of Cerenkov light. In addition, the dependence of the PMT response on the wavelength is taken into account. Finally, it is possible to take a potential asymmetry of efficiencies in a system with three PMTs into account. To this end, three free parameters are assigned to each individual PMT and then determined by means of a downhill simplex optimization algorithm. The computed counting efficiencies for a triple-to-double coincidence ratio (TDCR) system were compared with experimental data for (32)P, (89)Sr, and (90)Y.

3.
Appl Radiat Isot ; 87: 274-81, 2014 May.
Article in English | MEDLINE | ID: mdl-24345524

ABSTRACT

Liquid scintillation measurements of (229)Th in radioactive equilibrium with its progenies were carried out. The counting efficiency was determined by means of a free parameter model. The measurements were made in a custom-built triple-to-double coincidence ratio (TDCR) system. In addition, a new portable mini-TDCR system with three channel photomultipliers and two commercial counters were tested. The decay of the short-lived (213)Po requires great care, since it often occurs during the dead time of the counter systems. Also the rather short-lived (217)At may decay during the dead time caused by (221)Fr decay events. The overall counting efficiency of the TDCR system of PTB was found to be about 700% (depending on the degree of chemical quenching) and the relative standard uncertainty of the activity concentration was found to be about 0.23%. The determined activity concentration was compared with the outcome of alpha spectrometry under defined solid angle and excellent agreement was found. The TDCR efficiency calculations can be easily adapted to activity determinations of (225)Ra or (225)Ac in equilibrium with their progenies.

4.
Appl Radiat Isot ; 70(9): 1894-9, 2012 Sep.
Article in English | MEDLINE | ID: mdl-22406222

ABSTRACT

The purposes of this study were to create national activity standards of (64)Cu, to make possible the definition of an international key comparison reference value and to determine the decay data in order to improve the decay scheme. Four laboratories measured the activity of a (64)Cu solution; these results were compared through the International Reference System. Moreover, the laboratories carried out new measurements of the photon emission intensities and of the half-life. A new decay scheme was derived from these new values and the previously published ones.


Subject(s)
Copper Radioisotopes/analysis , Copper Radioisotopes/chemistry , Radiometry/standards , Half-Life , Internationality , Radiation Dosage , Reference Standards , Reference Values
5.
Appl Radiat Isot ; 67(1): 160-3, 2009 Jan.
Article in English | MEDLINE | ID: mdl-18829336

ABSTRACT

The sum-peak method was successfully applied to the determination of the activity of extended (60)Co sources measured on a HPGe detector. Monte Carlo simulations were used to account for the effects of the spatial variation of the efficiency across the sample volume and for the angular correlations between the emitted gamma rays. The determined activities agree with the reference values within a range of 1.0%.


Subject(s)
Cobalt Radioisotopes/analysis , Cobalt Radioisotopes/standards , Methods , Monte Carlo Method , Reference Standards
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