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Comparison of 41Ca analysis on 0.5 MV and 5 MV-AMS systems
Authors:T Schulze-König  C Maden  E Denk  SPHT Freeman  M Stocker  M Suter  H-A Synal  T Walczyk
Affiliation:1. Institute of Particle Physics, Swiss Federal Institute of Technology (ETH) Zurich, Zurich, Switzerland;2. Institute of Isotope Geochemistry and Mineral Resources, Swiss Federal Institute of Technology (ETH) Zurich, Zurich, Switzerland;3. Laboratory of Human Nutrition, Institute of Food Science and Nutrition, Swiss Federal Institute of Technology (ETH) Zurich, Zurich, Switzerland;4. Scottish Universities Environmental Research Centre (SUERC), Scottish Enterprise Technology Park, East Kilbride G75 0QF, United Kingdom;5. Department of Chemistry and Department of Biochemistry, National University of Singapore, Singapore 117543, Singapore
Abstract:A comparative study was made between the compact AMS system at the PSI/ETH Laboratory of Ion Beam Physics in Zurich with 0.5 MV terminal voltage and the 5 MV-AMS system at the Scottish Universities Environmental Research Centre (SUERC), Glasgow. Overall 34 urinary samples with 41Ca/40Ca ratios in the range from 4 × 10?11 to 3 × 10?10 were processed to CaF2 and aliquots of the same material were measured on both instruments.Measurements on the compact AMS system were performed in charge state 3+ achieving a transmission of 4% at 1.7 MeV beam energy. Under these conditions a suppression of the interference 41K is virtually impossible. However, samples with an excess of potassium can be identified by a shift of the 41Ca/41K peak in the ΔE ? E histogram of the gas ionization detector employed and a criterion for data rejection can be defined. An overall precision of ~4% and a 41Ca/40Ca background level of 5 × 10?12 have been reached.For studies with higher demands on the detection limit AMS systems like the one at SUERC are attractive: in charge state 5+ and using a gas stripper beam energy of 27 MeV, a transmission of 5%, a 41K suppression factor of ~500 and a 41Ca/40Ca background level of 3 × 10?14 are achieved.We demonstrate that both systems are well suited for large-scale 41Ca biomedical applications.
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