Search results for "transactinide"

showing 10 items of 35 documents

Attempts to chemically investigate element 112

2006

Summary Two experiments aiming at the chemical investigation of element 112 produced in the heavy ion induced nuclear fusion reaction of 48Ca with 238U were performed at the Gesellschaft für Schwerionenforschung (GSI), Darmstadt, Germany. Both experiments were designed to determine the adsorption enthalpy of element 112 on a gold surface using a thermochromatography setup. The temperature range covered in the thermochromatography experiments allowed the adsorption of Hg at about 35 °C and of Rn at about -180 °C. Reports from the Flerov Laboratory for Nuclear Reactions (FLNR), Dubna, Russia claim production of a 5-min spontaneous fission (SF) activity assigned to 283112 for the 238U(48Ca,3n)…

Nuclear reactionNuclear physicsAdsorptionIsotopeChemistryEnthalpyRadiochemistryNuclear fusionTransactinide elementPhysical and Theoretical ChemistryAtmospheric temperature rangeSpontaneous fissionRadiochimica Acta
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Chemical studies of elements with Z≥ 104 in liquid phase

2015

Abstract Recent studies of the chemical separation and characterization experiments of the first three transactinide elements, rutherfordium (Rf), dubnium (Db), and seaborgium (Sg), conducted atom-at-a-time in liquid phases, are reviewed. A short description on experimental techniques based on partition methods, specifically automated rapid chemical separation systems, is also given. A newly developed experimental approach to investigate single atoms of the heaviest elements with an electrochemical method is introduced. Perspectives for liquid-phase chemistry experiments on heavier elements are briefly discussed.

PhysicsDubniumNuclear and High Energy PhysicsCountercurrent chromatographyChemical substancechemistrySeaborgiumRutherfordiumAnalytical chemistryLiquid phaseTransactinide elementchemistry.chemical_elementScience technology and societyNuclear Physics A
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Frontiers of Heavy - Ion Physics and Superheavy Elements

2003

This contribution will focus on three topics of GSI nuclear structure research: super heavy elements, direct mass measurements in the storage ring, and the measurement of spallation cross section in reversed kinematics. The GSI project for an extended synchrotron facility will be outlined.

PhysicsFocus (computing)Nuclear and High Energy PhysicsFissionNuclear structureTransactinide elementSuperheavy ElementsSynchrotronlaw.inventionNuclear physicsCross section (physics)Nuclear Energy and EngineeringlawHeavy ionSpallationStorage ringJournal of Nuclear Science and Technology
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Isomeric states in Rf256

2021

The question of the number and origin of isomeric states in $^{256}\mathrm{Rf}$ arose from two independent experiments but remained unanswered for a decade. To shed light on this puzzle, we studied isomeric decay in $^{256}\mathrm{Rf}$ by measuring conversion electrons with fast fully digital electronics. $^{256}\mathrm{Rf}$ was produced in the fusion-evaporation reactions of $^{50}\mathrm{Ti}+^{207}\mathrm{Pb}$ and $^{50}\mathrm{Ti}+^{208}\mathrm{Pb}$ at the gas-filled recoil separator TransActinide Separator and Chemistry Apparatus. Among a total of 120 decays of $^{256}\mathrm{Rf}$, we detected 22 and 12 decays proceeding through one and two isomeric states. Half-lives of the low- and hi…

PhysicsGood quantum numbereducation.field_of_studyPopulationTransactinide elementProduction (computer science)ElectronAtomic physicseducationRecoil separatorPhysical Review C
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Speeding up liquid-phase heavy element chemistry: Development of a vacuum to liquid transfer chamber (VLTC)

2021

Abstract We present a new system, which is suitable for performing fast liquid phase chemistry experiments and gives access to shorter-lived isotopes of super heavy elements (SHE) than accessible with current techniques. With this novel vacuum to liquid transfer chamber (VLTC), which is mounted behind a physical preseparator, the desired isotopes are transported from the low-pressure side of the recoil separator directly into the liquid phase of a chemical experiment. Simulations on the kinematics of evaporation residues were performed using SRIM, validating the general plausibility of the VLTC concept. Subsequently, the feasibility was demonstrated with 250 , 252 Cf fission fragments, whic…

PhysicsNuclear and High Energy PhysicsIon exchangeFissionEvaporationAnalytical chemistryTransactinide elementchemistry.chemical_compoundchemistryNitric acidChemical stabilityCurrent (fluid)SpectroscopyInstrumentationNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Backings and targets for chemical and nuclear studies of transactinides with TASCA

2008

Abstract At GSI the gas-filled separator TASCA (TransActinide Separator and Chemistry Apparatus) was set up to investigate the chemical and physical properties of the heaviest elements making use of the highest beam intensities available [ www.gsi.de/tasca ; M. Schadel, D. Ackermann, A. Semchenkov, A. Turler, GSI Scientific Report 2005, GSI Report 2006-1, p. 262]. Appropriate backings and targets have to be developed. Conceivable backing materials are aluminium, titanium, and carbon. Aluminium backings and titanium backings in different thickness and from different companies are produced by cold rolling. Deposition by resistance heating is applied for carbon backings. For experiments in a c…

PhysicsNuclear and High Energy PhysicsMetallurgychemistry.chemical_elementTransactinide elementActinideUranium tetrafluorideUraniumNuclear physicschemistry.chemical_compoundVacuum depositionchemistryAluminiumBerylliumInstrumentationTitaniumNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Liquid-scintillation detection of preseparated 257Rf with the SISAK-system

2005

Abstract The fast liquid–liquid extraction system SISAK with continuous liquid scintillation detection was coupled to the Berkeley Gas-filled Separator to enable studies of the chemical properties of α -decaying transactinide elements. The preseparated transactinide 257Rf (4.7 s), was transported via a He/KCl-jet directly into the scintillation solution. This permitted the first unambiguous detection of transactinide atoms by the means of the α -liquid scintillation detectors of the SISAK-system. During the experiment, 89 257Rf atoms were observed. The type of events observed correspond well with the expectations based on half-lives, decay branches and transport- and hold-up times. The succ…

PhysicsNuclear and High Energy PhysicsScintillationLiquid scintillation countingAnalytical chemistrySeparator (oil production)chemistry.chemical_elementTransactinide elementNuclear magnetic resonancechemistryScintillation counterRutherfordiumSolvent extractionInstrumentationNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Average charge states of heavy and superheavy ions passing through a rarified gas: Theory and experiment

2013

The average charge states $\overline{q}$ of heavy and superheavy ions (atomic numbers $Z=80$--114) passing through He gas are studied experimentally and theoretically. Experimental data were measured at the gas-filled recoil separator, i.e., the TransActinide Separator and Chemistry Apparatus (TASCA) at GSI Darmstadt, for ion energies of a few hundred keV/u at gas pressures of 0.2 to 2.0 mbar. An attempt is made to describe experimental $\overline{q}$ values by means of atomic calculations of the binding energies and electron-loss and electron-capture cross sections. The influence of the gas-density effect is included in the calculations. The calculated $\overline{q}$ reproduce the experime…

PhysicsNuclear physicsAb initio quantum chemistry methodsBinding energyTransactinide elementCharge (physics)Atomic numberElectronic structureAtomic physicsAtomic and Molecular Physics and OpticsExcitationIonPhysical Review A
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The recoil transfer chamber—An interface to connect the physical preseparator TASCA with chemistry and counting setups

2011

Performing experiments with transactinide elements demands highly sensitive detection methods due to the extremely low production rates (one-atom-at-a-time conditions). Preseparation with a physical recoil separator is a powerful method to significantly reduce the background in experiments with sufficiently long-lived isotopes (t1/2≥0.5 s). In the last years, the new gas-filled TransActinide Separator and Chemistry Apparatus (TASCA) was installed and successfully commissioned at GSI. Here, we report on the design and performance of a Recoil Transfer Chamber (RTC) for TASCA—an interface to connect various chemistry and counting setups with the separator. Nuclear reaction products recoiling o…

PhysicsNuclear reactionNuclear and High Energy Physicschemistry.chemical_elementTransactinide elementRecoil separatorIonNuclear physicsRecoilCardinal pointRigidity (electromagnetism)chemistryRutherfordiumInstrumentationNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Complex chemistry with complex compounds

2016

In recent years gas-phase chemical studies assisted by physical pre-separation allowed for the investigation of fragile single molecular species by gas-phase chromatography. The latest success with the heaviest group 6 transactinide seaborgium is highlighted. The formation of a very volatile hexacarbonyl compound Sg(CO)6 was observed similarly to its lighter homologues molybdenum and tungsten. The interactions of these gaseous carbonyl complex compounds with quartz surfaces were investigated by thermochromatography. Second-generation experiments are under way to investigate the intramolecular bond between the central metal atom of the complexes and the ligands addressing the influence of re…

PhysicsQC1-999Transactinide elementchemistry.chemical_elementTungsten010402 general chemistry010403 inorganic & nuclear chemistry01 natural sciences0104 chemical sciencesMetalchemistryGroup (periodic table)Computational chemistryMolybdenumChemical physicsvisual_artIntramolecular forceSeaborgium540 ChemistryAtomvisual_art.visual_art_medium570 Life sciences; biologyEPJ Web of Conferences
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