Search results for "Isotopes of tin"

showing 10 items of 23 documents

Nuclear charge radii of the tin isotopes from muonic atoms.

1990

The muonic atom 2${\mathit{p}}_{1/2}$-1${\mathit{s}}_{1/2}$ and 2${\mathit{p}}_{3/2}$-1${\mathit{s}}_{1/2}$ transition energies were measured with an experimental accuracy of better than 20 ppm for the isotope chain $^{112,114,116,117,118,119,120,122,124}\mathrm{Sn}$. Precise values for the Barrett equivalent nuclear radii ${\mathit{R}}_{\mathit{k}\mathrm{\ensuremath{\alpha}}}$ and their differences as well as root-mean-square radii were deduced. The \ensuremath{\Delta}N=2 isotope shifts between the even Sn isotopes show a subshell effect at the neutron number N=64. Otherwise, there is a nearly linear decrease with increasing N, in accordance with the general systematics of nuclear charge r…

PhysicsNuclear and High Energy PhysicsMuonNeutron numberIsotopes of tinCharge densityElementary particlePhysics::Atomic PhysicsAtomic physicsEffective nuclear chargeExotic atomLeptonPhysical review. C, Nuclear physics
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Linear response strength functions with iterative Arnoldi diagonalization

2009

We report on an implementation of a new method to calculate RPA strength functions with iterative non-hermitian Arnoldi diagonalization method, which does not explicitly calculate and store the RPA matrix. We discuss the treatment of spurious modes, numerical stability, and how the method scales as the used model space is enlarged. We perform the particle-hole RPA benchmark calculations for double magic nucleus 132Sn and compare the resulting electromagnetic strength functions against those obtained within the standard RPA.

PhysicsNuclear and High Energy PhysicsNuclear TheoryIterative methodNuclear TheoryFOS: Physical sciencesCalculation methodsNuclear Theory (nucl-th)Quantum mechanicsIsotopes of tinPhysics::Atomic and Molecular ClustersApplied mathematicsSpurious relationshipRandom phase approximationNuclear theoryNumerical stability
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Systematic QRPA study of β− and decay transitions to excited states of 110–114Cd and 114–122Sn

1995

Abstract A systematic study of the β− and β + EC decay transitions of odd-odd nuclei into the ground state, first excited quadrupole state (21+) and the two-quadrupole-phonon triplet (02ph+, 22ph+ and 42ph+) of the final even-even nuclei 110–114Cd and 114–122Sn is performed. In these cases the states of the even-even nucleus are fed both by β− as well as β + EC decay transitions of the two adjacent double-odd nuclei. Such exceptional circumstances help to study the β− and β + EC Gamow-Teller decay on equal footing starting from the predictions of the combined QRPA and pn-QRPA theories. In addition, the differences between the QRPA and the QTDA predictions are discussed. The present approach…

PhysicsNuclear and High Energy PhysicsNuclear TheorySpectral linemedicine.anatomical_structureExcited stateIsotopes of tinQuadrupolemedicineAtomic physicsNuclear ExperimentGround stateMultipletNucleusNuclear Physics A
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Nuclear spins, moments and charge radii of108?111Sn

1987

The hyperfine structure splittings (hfs) and isotope shifts (IS) in the atomic transitions 5s2 5p21S0 → 5s2 5p6s1,3P1 have been measured for the radioactive isotopes108−111Sn and all stable ones. The tin isotopes were prepared as fast atomic beams for collinear laser spectroscopy at the GSI online mass separator following a fusion reaction. Nuclear spins, magnetic dipole, electric quadrupole moments and changes in mean square charge radii have been determined. In109Sn the spinI=5/2 was measured for the nuclear ground state (T1/2=18 min) in contradiction to the literature value. The mean square charge radii show a parabolic behaviour with a maximum at N=66. This is interpreted by collective …

PhysicsNuclear and High Energy PhysicsSpinsIsotopes of tinQuadrupoleNuclear fusionPhysics::Atomic PhysicsAtomic physicsNuclear ExperimentGround stateSpectroscopyHyperfine structureMagnetic dipoleZeitschrift f�r Physik A Atomic Nuclei
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Mass measurements on neutron-deficient Sr and neutron-rich Sn isotopes with the ISOLTRAP mass spectrometer

2005

Abstract The atomic masses of 76,77,80,81,86,88 Sr and 124,129,130,131,132 Sn were measured by means of the Penning trap mass spectrometer ISOLTRAP at ISOLDE/CERN. 76 Sr is now the heaviest N = Z nucleus for which the mass is measured to a precision better than 35 keV. For the tin isotopes in the close vicinity of the doubly magic nucleus 132 Sn, mass uncertainties below 20 keV were achieved. An atomic mass evaluation was carried out taking other experimental mass values into account by performing a least-squares adjustment. Some discrepancies between older experimental values and the ones reported here emerged and were resolved. The results of the new adjustment and their impact will be pr…

PhysicsNuclear and High Energy Physicsatomic masses010308 nuclear & particles physics[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Mass spectrometryISOLTRAP01 natural sciencesISOLTRAPAtomic massNuclear physicsMasstin0103 physical sciencesIsotopes of tinNeutronstrontiumAtomic physics010306 general physicsNuclear ExperimentQuadrupole mass analyzerhigh-precision mass spectrometryHybrid mass spectrometer07.75.+h 21.10.Dr 32.10.Bi
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Giant Monopole Resonances and nuclear incompressibilities studied for the zero-range and separable pairing interactions

2012

Background: Following the 2007 precise measurements of monopole strengths in tin isotopes, there has been a continuous theoretical effort to obtain a precise description of the experimental results. Up to now, there is no satisfactory explanation of why the tin nuclei appear to be significantly softer than 208Pb. Purpose: We determine the influence of finite-range and separable pairing interactions on monopole strength functions in semi-magic nuclei. Methods: We employ self-consistently the Quasiparticle Random Phase Approximation on top of spherical Hartree-Fock-Bogolyubov solutions. We use the Arnoldi method to solve the linear-response problem with pairing. Results: We found that the dif…

PhysicsNuclear and High Energy Physicsta114Nuclear Theory[PHYS.NUCL]Physics [physics]/Nuclear Theory [nucl-th]010308 nuclear & particles physicsMagnetic monopolechemistry.chemical_elementFOS: Physical sciencesNuclear matter01 natural sciencesSeparable spaceNuclear Theory (nucl-th)chemistryPairingQuantum mechanics0103 physical sciencesIsotopes of tinPhysical SciencesQuasiparticle010306 general physicsRandom phase approximationTin
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Approaching theN=82shell closure with mass measurements of Ag and Cd isotopes

2010

Mass measurements of neutron-rich Cd and Ag isotopes were performed with the Penning trap mass spectrometer ISOLTRAP. The masses of ${}^{112,114\ensuremath{-}124}$Ag and ${}^{114,120,122\ensuremath{-}124,126,128}$Cd, determined with relative uncertainties between $2\ifmmode\times\else\texttimes\fi{}{10}^{\ensuremath{-}8}$ and $2\ifmmode\times\else\texttimes\fi{}{10}^{\ensuremath{-}7}$, resulted in significant corrections and improvements of the mass surface. In particular, the mass of $^{124}\mathrm{Ag}$ was previously unknown. In addition, other masses that had to be inferred from $Q$ values of nuclear decays and reactions have now been measured directly. The analysis includes various mass…

PhysicsNuclear reactionNuclear and High Energy Physics010308 nuclear & particles physicsQ value21.10.Dr 21.30.Fe 27.60.+jHadron[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]01 natural sciencesISOLTRAPIsotopes of cadmium0103 physical sciencesIsotopes of tinNuclear Physics - ExperimentAtomic physics010306 general physicsNucleonEnergy (signal processing)Physical Review C
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Production of very neutron-deficient isotopes near Sn via reactions involving light-particle and cluster emission

2000

Abstract The production of very neutron-deficient isotopes near 100Sn has been investigated by using on-line mass separation of evaporation residues produced by heavy-ion induced complete-fusion reactions. We measured the cross sections for 99Cd, 100In, 101Sn and 102In via 58Ni+58Ni fusion reactions followed by cluster emission, and via 58Ni+50Cr fusion reactions accompanied by evaporation of protons, neutrons or α particles. Both types of reactions yield similar cross sections for the production of exotic nuclei near 100Sn. The data are discussed in comparison with results obtained from statistical-model calculations.

PhysicsNuclear reactionNuclear and High Energy PhysicsIsotopeIsotopes of cadmiumIsotopes of tinAnalytical chemistryNuclear fusionNeutronAlpha particleAtomic physicsNuclear ExperimentCharged particleNuclear Physics A
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Experimental study of fragmentation products in the reactions112Sn+112Snand124Sn+124Snat 1AGeV

2011

Production cross sections and longitudinal velocity distributions of the projectilelike residues produced in the reactions ${}^{112}\text{Sn}+{}^{112}\text{Sn}$ and ${}^{124}\text{Sn}+{}^{124}\text{Sn}$, both at an incident beam energy of 1$A$ GeV, were measured with the high-resolution magnetic spectrometer, the Fragment Separator of GSI. For both reactions the characteristics of the velocity distributions and nuclide production cross sections were determined for residues with atomic number $Z\ensuremath{\ge}10$. A comparison of the results of the two reactions is presented.

PhysicsNuclear reactionNuclear and High Energy PhysicsIsotopeStable isotope ratioIsotopes of tinAnalytical chemistryProduction (computer science)NuclideAtomic numberAtomic physicsEnergy (signal processing)Physical Review C
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Smallest KnownQValue of Any Nuclear Decay: The Rareβ−Decay ofIn115(9/2+)→Sn115(3/2+)

2009

The ground-state-to-ground-state Q_{beta;{-}} value of ;{115}In was determined to 497.68(17) keV using a high-precision Penning trap facility at the University of Jyvaskyla, Finland. From this, a Q_{beta;{-}} value of 0.35(17) keV was obtained for the rare beta;{-} decay to the first excited state of ;{115}Sn at 497.334(22) keV. The partial half-life was determined to 4.1(6) x 10;{20} yr using ultra low-background gamma-ray spectrometry in an underground laboratory. Theoretical modeling of this 2nd-forbidden unique beta;{-} transition was also undertaken and resulted in Q_{beta;{-}} = 57_{-12};{+19} eV using the measured half-life. The discrepancy between theory and experiment could be attr…

PhysicsQ valueExcited stateIsotopes of tinGeneral Physics and AstronomyGamma spectroscopyBeta (velocity)Atomic physicsBeta decayEnergy (signal processing)Radioactive decayPhysical Review Letters
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