Search results for "Fission products"

showing 3 items of 63 documents

On-Line Measurement of Gaseous Iodine Species During a PWR Severe Accident

2015

International audience; Iodine is a highly radio-toxic element, due to its affinity to the thyroid, and represents the major part of the radioactivity released during a nuclear accident. In the context of nuclear safety and radio-protection, we are interested in identifying the iodine gaseous species which are released, in the nuclear power plants, under molecular (I$_2$) and organic (CH$_3$I) forms. Therefore, we are working on providing a spectroscopic database for both species. While the infrared spectrum of the ν6 band of methyl iodide was previously studied, only 4000 lines were assigned. We present the rovibrational analysis of a high quality experimental spectrum, of this band, recor…

[PHYS.NUCL] Physics [physics]/Nuclear Theory [nucl-th]Fission productsRadionuclide[PHYS.NUCL]Physics [physics]/Nuclear Theory [nucl-th]business.industry[PHYS.NEXP] Physics [physics]/Nuclear Experiment [nucl-ex]Nuclear engineeringchemistry.chemical_elementInternational Nuclear Event ScaleNuclear power[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Iodinecomplex mixtures7. Clean energyAerosolXenonchemistryCaesiumEnvironmental sciencebusiness
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Penning-trap-assisted decay spectroscopy studies of neutron-rich nuclei in the A = 110 region

2011

hiukkasloukutJYFLTRAP-ioniloukkuspectroscopyisotoopitionitPenning trapPenningin loukkuspektroskopiaioniloukutneutronirikkaat ytimetneutron-rich fission productsydinfysiikkaisotopes
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Total Absorption Spectroscopy of Fission Fragments Relevant for Reactor Antineutrino Spectra and Decay Heat Calculations

2016

Beta decay of fission products is at the origin of decay heat and antineutrino emission in nuclear reactors. Decay heat represents about 7% of the reactor power during operation and strongly impacts reactor safety. Reactor antineutrino detection is used in several fundamental neutrino physics experiments and it can also be used for reactor monitoring and non-proliferation purposes. 92,93Rb are two fission products of importance in reactor antineutrino spectra and decay heat, but their β-decay properties are not well known. New measurements of 92,93Rb β-decay properties have been performed at the IGISOL facility (Jyväskylä, Finland) using Total Absorption Spectroscopy (TAS). TAS is complemen…

rubidiumdecay heatfission productsHigh Energy Physics::Experimentbeta decayantineutrino emissionNuclear ExperimentPhysics::Geophysics
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