Search results for "Ruth"

showing 10 items of 661 documents

K isomerism in Rf255 and total kinetic energy measurements for spontaneous fission of Rf255,256,258

2020

Spontaneous fission properties of the isotopes $^{255}\mathrm{Rf}$, $^{256}\mathrm{Rf}$, and $^{258}\mathrm{Rf}$ produced in the reactions $^{50}\mathrm{Ti}+^{207}\mathrm{Pb}$, $^{50}\mathrm{Ti}+^{208}\mathrm{Pb}$, and $^{50}\mathrm{Ti}+^{209}\mathrm{Bi}$ were studied. The method of time and position correlations was used to identify spontaneous fission events. The correction to the energy deficit in measured total kinetic energy (TKE) determined on the basis of a study of $^{252}\mathrm{No}$ was applied to evaluate the $\overline{\mathrm{TKE}}$ of investigated rutherfordium isotopes. A signature which we assigned tentatively to bimodal fission was observed in TKE distributions of $^{255}\m…

Physics010308 nuclear & particles physicsFissionchemistry.chemical_elementKinetic energy01 natural scienceschemistryMetastability0103 physical sciencesRutherfordiumEnergy deficitAtomic physics010306 general physicsExcitationSpontaneous fissionPhysical Review C
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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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4He+Ni elastic scattering near the Coulomb barrier and optical model parameters

2002

Cross sections for the elastic scattering system of 4He+Ni have been investigated. Natural nickel was bombarded by 4He ions in the laboratory energy range of 3.0–14.3 MeV and the intensity of helium backscattering through laboratory angles of 96°, 117°, and 137° was observed. From measured yield data, the cross sections were extracted for the direct Ni(4He,4He)Ni scattering process as well as for the inverse recoil scattering process 4He(58Ni,4He)58Ni by calculating the kinematical reversal of the reaction. The experimental helium scattering angles convert to helium recoil angles of 20°, 30°, and 40°, and the incident helium ion energies to 43.5–207 MeV for incident 58Ni ions in the reverse…

PhysicsElastic scatteringQuasielastic scatteringScatteringGeneral Physics and AstronomyScattering lengthMott scatteringInelastic scatteringSmall-angle neutron scatteringsymbols.namesakesymbolsRutherford scatteringAtomic physicsNuclear ExperimentJournal of Applied Physics
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Phase retrieval of a Kolmogorov phase screen from very sparse data using four binary masks

2020

We investigate experimentally the phase retrieval of a Kolmogorov phase screen from very sparse data by modulating its amplitude with four binary masks and compare the retrieved phase screen to the ground truth measured with a surface profiler. Previously, we have shown in simulations that this kind of modulation can be successfully used for the phase retrieval of a Kolmogorov phase screen. After subtracting the ground truth from the retrieved phase screen, the root-mean-square error decreased from 0.14 µm to 0.10 µm. We conclude that a Kolmogorov phase screen can be recovered using simple modulation and very sparse data.

PhysicsGround truthbusiness.industryBinary numberAtomic and Molecular Physics and OpticsPtychographyAmplitudeOpticsModulationSpatial frequencyElectrical and Electronic EngineeringPhase retrievalbusinessEngineering (miscellaneous)AlgorithmSparse matrixApplied Optics
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Spontaneous fission of rutherfordium isotopes - total kinetic energies

2019

The isotopes 255,256,258Rf were produced in the fusion-evaporation reactions 50Ti + 207,208Pb and 50Ti + 209Bi at GSI Darmstadt, using the velocity filter SHIP. Total kinetic energies of fragments from spontaneous fission for these isotopes were evaluated with a correction to pulse-height defect.

PhysicsIsotope010308 nuclear & particles physicsPhysicsQC1-999chemistry.chemical_element[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Kinetic energy7. Clean energy01 natural sciencesNuclear physicschemistryFilter (video)0103 physical sciencesRutherfordium010306 general physicsSpontaneous fission
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Microscopic description of complex nuclear decay: multimodal fission

2009

Our understanding of nuclear fission, a fundamental nuclear decay, is still incomplete due to the complexity of the process. In this paper, we describe a study of spontaneous fission using the symmetry-unrestricted nuclear density functional theory. Our results show that the observed bimodal fission can be explained in terms of pathways in multidimensional collective space corresponding to different geometries of fission products. We also predict a new phenomenon of trimodal spontaneous fission for some rutherfordium, seaborgium, and hassium isotopes.

PhysicsNuclear and High Energy PhysicsFission productsNuclear TheoryFissionNuclear Theorychemistry.chemical_elementFOS: Physical sciencesHassiumNuclear physicsNuclear Theory (nucl-th)chemistryNuclear fissionSeaborgiumRutherfordiumPhysics::Atomic and Molecular ClustersNuclear ExperimentRadioactive decaySpontaneous fission
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Characterization of alpha sources by Rutherford backscattering spectrometry

1996

Radioactive sources for alpha spectrometry are usually prepared by electrodeposition onto stainless steel backings (and sometimes heated). In earlier work, using the conventional method with passivated implanted planar silicon detectors for the measurements, several sources had been characterized in terms of various parameters by fitting the data of each spectrum to a certain mathematical function. In the present work, the Rutherford Backscattering Spectrometry (RBS) technique with a 1.6 MeV He+ beam was used to study the influence of those factors on the surface distribution and depth profiles of the thin radionuclide layers. Simulations of the measurements using the RUMP computer code wer…

PhysicsNuclear and High Energy PhysicsPlanarSiliconchemistryAlpha spectrometryDetectorchemistry.chemical_elementAtomic physicsRutherford backscattering spectrometryInstrumentationBeam (structure)Characterization (materials science)Nuclear 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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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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Fast ion swapping for quantum-information processing

2016

We demonstrate a swap gate between laser-cooled ions in a segmented microtrap via fast physical swapping of the ion positions. This operation is used in conjunction with qubit initialization, manipulation, and readout and with other types of shuttling operations such as linear transport and crystal separation and merging. Combining these operations, we perform quantum process tomography of the swap gate, obtaining a mean process fidelity of 99.5(5)%. The swap operation is demonstrated with motional excitations below 0.05(1) quantum for all six collective modes of a two-ion crystal for a process duration of $42\ensuremath{\mu}\mathrm{s}$. Extending these techniques to three ions, we reverse …

PhysicsQuantum PhysicsTruth tableFOS: Physical sciencesInitialization02 engineering and technology021001 nanoscience & nanotechnologyTopology01 natural sciencesIonProcess durationQubitQuantum process0103 physical sciencesQuantum Physics (quant-ph)010306 general physics0210 nano-technologySwap (computer programming)QuantumPhysical Review A
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