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The mass of $^{22}$Mg and a concept for a novel laser ion source trap
Clean and high-quality radioactive ion beams can be prepared by combining ion trap and resonance laser ionization techniques. A feasibility study for such a laser ion source trap has been carried out which shows enormous improvement in the beam emittance, purity, and in addition allows for a variati...
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Lenguaje: | eng |
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2012
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Acceso en línea: | http://cds.cern.ch/record/1476089 |
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author | Mukherjee, Manas |
author_facet | Mukherjee, Manas |
author_sort | Mukherjee, Manas |
collection | CERN |
description | Clean and high-quality radioactive ion beams can be prepared by combining ion trap and resonance laser ionization techniques. A feasibility study for such a laser ion source trap has been carried out which shows enormous improvement in the beam emittance, purity, and in addition allows for a variation of the ion beam time structure. Direct high-precision mass measurements around mass number A=22 are of utmost importance. First, the masses of the superallowed $\beta$-emitter $^{22}$Mg and its daughter $^{22}$Na are needed to test the conserved-vector-current(CVC) hypothesis and the Cabibbo-Kobayashi-Maskawa(CKM) matrix unitarity, both being predictions of the Standard Model. Second, to calculate the reaction rate of $^{21}$Na($p,\gamma$)$^{22}$Mg the involved masses are required very accurately. This rate is needed in order to extract an upper limit on the amount of a characteristic $\gamma$-radiation emitted from classical nova bursts which has been searched for but not yet detected. At the triple trap mass spectrometer ISOLTRAP at ISOLDE/CERN, the masses of $^{21}$Na, $^{22}$Na, and $^{22}$Mg have been measured with relative uncertainties of better than $1.5 \times 10^{-8}$. This solved a conflict between two available mass values for $^{22}$Mg. The mass measurements as well as their impact are discussed. In addition a vivid description of the present ISOLTRAP setup along with the standard experimental procedure is described. Special emphasis has been made on the development of a carbon cluster ion source for absolute mass measurements at ISOLTRAP. |
id | cern-1476089 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2012 |
record_format | invenio |
spelling | cern-14760892019-09-30T06:29:59Zhttp://cds.cern.ch/record/1476089engMukherjee, ManasThe mass of $^{22}$Mg and a concept for a novel laser ion source trapNuclear Physics - ExperimentDetectors and Experimental TechniquesClean and high-quality radioactive ion beams can be prepared by combining ion trap and resonance laser ionization techniques. A feasibility study for such a laser ion source trap has been carried out which shows enormous improvement in the beam emittance, purity, and in addition allows for a variation of the ion beam time structure. Direct high-precision mass measurements around mass number A=22 are of utmost importance. First, the masses of the superallowed $\beta$-emitter $^{22}$Mg and its daughter $^{22}$Na are needed to test the conserved-vector-current(CVC) hypothesis and the Cabibbo-Kobayashi-Maskawa(CKM) matrix unitarity, both being predictions of the Standard Model. Second, to calculate the reaction rate of $^{21}$Na($p,\gamma$)$^{22}$Mg the involved masses are required very accurately. This rate is needed in order to extract an upper limit on the amount of a characteristic $\gamma$-radiation emitted from classical nova bursts which has been searched for but not yet detected. At the triple trap mass spectrometer ISOLTRAP at ISOLDE/CERN, the masses of $^{21}$Na, $^{22}$Na, and $^{22}$Mg have been measured with relative uncertainties of better than $1.5 \times 10^{-8}$. This solved a conflict between two available mass values for $^{22}$Mg. The mass measurements as well as their impact are discussed. In addition a vivid description of the present ISOLTRAP setup along with the standard experimental procedure is described. Special emphasis has been made on the development of a carbon cluster ion source for absolute mass measurements at ISOLTRAP.oai:cds.cern.ch:14760892012-09-04T15:19:57Z |
spellingShingle | Nuclear Physics - Experiment Detectors and Experimental Techniques Mukherjee, Manas The mass of $^{22}$Mg and a concept for a novel laser ion source trap |
title | The mass of $^{22}$Mg and a concept for a novel laser ion source trap |
title_full | The mass of $^{22}$Mg and a concept for a novel laser ion source trap |
title_fullStr | The mass of $^{22}$Mg and a concept for a novel laser ion source trap |
title_full_unstemmed | The mass of $^{22}$Mg and a concept for a novel laser ion source trap |
title_short | The mass of $^{22}$Mg and a concept for a novel laser ion source trap |
title_sort | mass of $^{22}$mg and a concept for a novel laser ion source trap |
topic | Nuclear Physics - Experiment Detectors and Experimental Techniques |
url | http://cds.cern.ch/record/1476089 |
work_keys_str_mv | AT mukherjeemanas themassof22mgandaconceptforanovellaserionsourcetrap AT mukherjeemanas massof22mgandaconceptforanovellaserionsourcetrap |