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Development and applications of accelerator mass spectrometry methods for measurement of .sup.14C, .sup.10Be and .sup.26Al in the CENTA laboratory
Development and applications of accelerator mass spectrometry methods for measurement of .sup.14C, .sup.10Be and .sup.26Al in the CENTA laboratory
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Development and applications of accelerator mass spectrometry methods for measurement of .sup.14C, .sup.10Be and .sup.26Al in the CENTA laboratory
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Development and applications of accelerator mass spectrometry methods for measurement of .sup.14C, .sup.10Be and .sup.26Al in the CENTA laboratory
Development and applications of accelerator mass spectrometry methods for measurement of .sup.14C, .sup.10Be and .sup.26Al in the CENTA laboratory

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Development and applications of accelerator mass spectrometry methods for measurement of .sup.14C, .sup.10Be and .sup.26Al in the CENTA laboratory
Development and applications of accelerator mass spectrometry methods for measurement of .sup.14C, .sup.10Be and .sup.26Al in the CENTA laboratory
Journal Article

Development and applications of accelerator mass spectrometry methods for measurement of .sup.14C, .sup.10Be and .sup.26Al in the CENTA laboratory

2024
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Overview
Terrestrial and extraterrestrial radioisotope research has been strongly dependent on the development of analytical methods which would enable to trace radioisotopes at low concentrations in subgram samples (e.g., in tree rings, ice cores, meteorites, etc.). Accelerator mass spectrometry (AMS) has become the most sensitive technique for ultralow-level analysis of long-lived radioisotopes, such as .sup.14C, .sup.10Be and .sup.26Al. We review developments and applications carried out in the CENTA laboratory, and describe a recently installed fully equipped AMS line, designed for analysis of long-lived radioisotopes from tritium to curium.