0000000000097432

AUTHOR

A. Yakushev

showing 14 related works from this author

First Study on Nihonium (Nh, Element 113) Chemistry at TASCA

2021

Frontiers in Chemistry 9, 753738 (2021). doi:10.3389/fchem.2021.753738

Shell (structure)Analytical chemistrychemistry.chemical_elementSuperheavy Elementselement 113gas phase chromatographyAtomic orbitalatomifysiikkaTASCAReactivity (chemistry)QD1-999Original ResearchIsotopeGeneral Chemistry540superheavy elementkemialliset ominaisuudetChemistryFleroviumsuperheavy elementsUnpaired electronchemistrynihoniumddc:540physical preseparationVolatility (chemistry)
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Measurements of charge state distributions of 0.74 and 1.4  MeV/u heavy ions passing through dilute gases

2017

In many modern heavy-ion accelerator facilities, gas strippers are used to increase the projectile charge state for improving the acceleration efficiency of ion beams to higher energies. For this application, the knowledge on the behavior of charge state distributions of heavy-ions after passing through dilute gases is of special interest. Charge state distributions of uranium ($^{238}\mathrm{U}$), bismuth ($^{209}\mathrm{Bi}$), titanium ($^{50}\mathrm{Ti}$), and argon ($^{40}\mathrm{Ar}$) ion beams with energies of $0.74\text{ }\mathrm{MeV}/\mathrm{u}$ and $1.4\text{ }\mathrm{MeV}/\mathrm{u}$ after passing through hydrogen (${\mathrm{H}}_{2}$), helium (He), carbon dioxide (${\mathrm{CO}}_{…

PhysicsNuclear and High Energy PhysicsArgonPhysics and Astronomy (miscellaneous)Hydrogen010308 nuclear & particles physicschemistry.chemical_elementCharge (physics)Surfaces and Interfaces010403 inorganic & nuclear chemistry01 natural sciences0104 chemical sciencesBismuthIonNeonchemistry0103 physical sciencesPhysics::Accelerator PhysicsProduction (computer science)Atomic physicsHeliumPhysical Review Accelerators and Beams
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A concept for the extraction of the most refractory elements at CERN-ISOLDE as carbonyl complex ions

2021

The European physical journal / A 58(5), 94 (2022). doi:10.1140/epja/s10050-022-00739-1

spectroscopyNuclear and High Energy PhysicsPhysics - Instrumentation and DetectorsFOS: Physical sciencesInstrumentation and Detectors (physics.ins-det)dissociation530moonline separationdischargehexacarbonylsionizationfissionbeamsddc:530Detectors and Experimental Techniquesphysics.ins-detisotopes
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Applications of the pulsed gas stripper technique at the GSI UNILAC

2017

Abstract In the frame of an upgrade program for the GSI UNILAC, preparing it for the use as an injector system for FAIR, a pulsed gas stripper cell was developed. It utilizes the required low duty cycle by applying a pulsed gas injection instead of a continuous gas inlet. The resulting lower gas consumption rate enables the use of low-Z gas targets over a wide range of stripper target thicknesses. The setup enables an increased flexibility for the accelerator by allowing the gas stripper to be used in time-sharing beam operation matching the capabilities of the GSI UNILAC like the acceleration of different ion beams in quasi-parallel operation. Measured charge state distributions of 238 U, …

PhysicsNuclear and High Energy PhysicsRange (particle radiation)010308 nuclear & particles physicsNuclear engineeringInjector01 natural scienceslaw.inventionIonAccelerationUpgradelawDuty cycle0103 physical sciences010306 general physicsGas consumptionInstrumentationBeam (structure)Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Spectroscopic Tools Applied to Element Z = 115 Decay Chains

2014

Nuclides that are considered to be isotopes of element Z = 115 were produced in the reaction 48Ca + 243Am at the GSI Helmholtzzentrum für Schwerionenforschung Darmstadt. The detector setup TASISpec was used. It was mounted behind the gas-filled separator TASCA. Thirty correlated α-decay chains were found, and the energies of the particles were determined with high precision. Two important spectroscopic aspects of the offline data analysis are discussed in detail: the handling of digitized preamplified signals from the silicon strip detectors, and the energy reconstruction of particles escaping to upstream detectors relying on pixel-by-pixel dead-layer thicknesses.

PhysicsIsotopeSiliconPhysics::Instrumentation and DetectorsPhysicsQC1-999DetectorSeparator (oil production)Mechanical engineeringchemistry.chemical_element7. Clean energyNuclear physicschemistryPhysical SciencesSubatomic Physicsddc:530Decay chainNuclideNuclear ExperimentLine (formation)EPJ Web of Conferences
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Spectroscopy along flerovium decay chains. II : Fine structure in odd-A289Fl

2023

Fifteen correlated α-decay chains starting from the odd-A superheavy nucleus 289Fl were observed following the fusion-evaporation reaction 48Ca+244Pu. The results call for at least two parallel α-decay sequences starting from at least two different states of 289Fl. This implies that close-lying levels in nuclei along these chains have quite different spin-parity assignments. Further, observed α-electron and α-photon coincidences, as well as the α-decay fine structure along the decay chains, suggest a change in the ground-state spin assignment between 285Cn and 281Ds. Our experimental results, on the excited level structure of the heaviest odd-N nuclei to date, provide a direct testing groun…

ydinfysiikka
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Towards saturation of the electron-capture delayed fission probability : The new isotopes 240Es and 236Bk

2017

The new neutron-deficient nuclei 240Es and 236Bk were synthesised at the gas-filled recoil separator RITU. They were identified by their radioactive decay chains starting from 240Es produced in the fusion–evaporation reaction 209Bi(34S,3n)240Es. Half-lives of 6(2) sand 22+13−6swere obtained for 240Es and 236Bk, respectively. Two groups of αparticles with energies Eα=8.19(3) MeVand 8.09(3) MeVwere unambiguously assigned to 240Es. Electron-capture delayed fission branches with probabilities of 0.16(6)and 0.04(2)were measured for 240Es and 236Bk, respectively. These new data show a continuation of the exponential increase of ECDF probabilities in more neutron-deficient isotopes. peerReviewed

fusion-evaporation reactionsisotoopitmasselectron-capture delayed fissionα decay
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Some Remarks on the Discovery of 244Md

2021

In two recent papers by Pore et al. and Khuyagbaatar et al., discovery of the new isotope Md244 was reported. The decay data, however, are conflicting. While Pore et al. report two isomeric states decaying by α emission with Eα(1)=8.66(2) MeV, T1/2(1)=0.4-0.1+0.4 s and Eα(2)=8.31(2) MeV, T1/2(2)≈6 s, Khuyagbaatar et al. [Phys. Rev. Lett. 125, 142504 (2020).PRLTAO0031-900710.1103/PhysRevLett.125.142504] report only a single transition with a broad energy distribution of Eα=(8.73-8.86) MeV and T1/2=0.30-0.09+0.19 s. The data published in Pore et al. are very similar to those published for Md245m [Eα=8.64(2), 8.68(2) MeV, T1/2=0.35-0.16+0.23 s [V. Ninov, F. P. Heßberger, S. Hofmann, H. Folger,…

isotoopitydinfysiikka
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Spectroscopy along flerovium decay chains. III : Details on experiment, analysis, 282Cn, and spontaneous fission branches

2023

Flerovium isotopes (element Z=114) were produced in the fusion-evaporation reactions 48Ca+242,244Pu and studied with an upgraded TASISpec decay station placed in the focal plane of the gas-filled separator TASCA at the GSI Helmholtzzentrum für Schwerionenforschung in Darmstadt, Germany. Twenty-nine flerovium decay chains were identified by means of correlated implantation, α decay, and spontaneous fission events. Data analysis aspects and statistical assessments, primarily based on measured rates of various events, which laid the foundation for the comprehensive spectroscopic information on the flerovium decay chains, are presented in detail. Various decay scenarios of an excited state obse…

ydinfysiikka
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On the adsorption and reactivity of element 114, flerovium

2022

Flerovium (Fl, element 114) is the heaviest element chemically studied so far. To date, its interaction with gold was investigated in two gas-solid chromatography experiments, which reported two different types of interaction, however, each based on the level of a few registered atoms only. Whereas noble-gas-like properties were suggested from the first experiment, the second one pointed at a volatile-metal-like character. Here, we present further experimental data on adsorption studies of Fl on silicon oxide and gold surfaces, accounting for the inhomogeneous nature of the surface, as it was used in the experiment and analyzed as part of the reported studies. We confirm that Fl is highly v…

superheavy elementsatomitatomifysiikkaadsorptionradiokemiaalkuaineetradiochemistrynuclear chemistryadsorptiorecoil separatorselement 114kemialliset ominaisuudet
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Upgrade preparation for the 1.4 MeV/u gas stripper system for FAIR

2014

GSI Scientific Report 2013 - GSI Report 2014-1

Physics
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Recoil-alpha-fission and Recoil-alpha-alpha-fission Chains Stemming from Element 115

2015

GSI Scientific Report 2014 - GSI Report 2015-1

PhysicsSubatomic Physics
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Study of non-fusion products in the 50Ti + 249Cf reaction

2018

Physics letters / B B 784, 199 - 205 (2018). doi:10.1016/j.physletb.2018.07.058

ydinreaktiotproduction of radioactive nucleiddc:530multi-nucleon transfer reactionsquasifissionNuclear Experimentα decayydinfysiikka530
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117番元素Ts合成のための48Ca+249Bk融合反応

2019

We have performed an experiment to synthesize the element 117 (Ts) with the $^{48}$Ca+$^{249}$Bk fusion reaction. Four $\alpha$-decay chains attributed to the element 117 were observed. Two of them were long decay chains which can be assigned to the one originating from the $\alpha$ decay of $^{294}$Ts. The other two were short decay chains which are consistent with the one originating from the $\alpha$ decay of $^{293}$Ts. We have compared the present results with the literature data, and found that our present results mostly confirmed the literature data, leading to the firm confirmation of the synthesis of the element 117.

gas-filled separatorsuperheavy elementselement 117 (Ts)alpha decaySubatomic PhysicsNuclear Theorylow and intermediate energy heavy-ion reactionsydinfysiikkaNuclear Experimentnuclear structure and decays
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