0000000000289726

AUTHOR

E. Mukhamejanov

showing 4 related works from this author

Neutron halos in the excited states of 12B

2018

The differential cross sections of the 11B(d,p) 12B reaction leading to formation of the 1+ ground state and the 0.95-MeV 2+, 1.67-MeV 2−, 2.62-MeV 1−, 2.72-MeV 0+, and 3.39-MeV 3− excited states of 12B are measured at Ed = 21.5 MeV. The analysis of the data is carried out within the coupled-reaction-channels method for the direct neutron transfer and the Hauser-Feshbach formalism of the statistical compound-nucleus model. The spectroscopic factors, asymptotic normalization coefficients, and rms radii of the last neutron in all states studied are deduced. The existence of the neutron halos in the 1.67-MeV 2− and 2.62-MeV 1− states is found, consistent with the earlier published data. New in…

cluster modelselectromagnetic momentsNuclear Theorynucleon distributiontransfer reactionsbooriPhysics::Accelerator Physicsspectroscopic factorsdirect reactionsNuclear Experimentydinfysiikka
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Neutron halos in excited states of 12 B

2018

An experiment was done to search for states with a neutron halo in 12 B. The measurements were carried out at the cyclotron of the University of Jyvaskyla (Finland) using Large Scattering Chamber (LSC). The idea of the work was to search for two states with the expected neutron halo, 1¯ and 2¯. Differential cross sections with excitation of 12 B states, including abovementioned states, were observed. The preliminary calculations on halo radii by the method of asymptotic normalization coefficients for the 2¯ and 1¯ states which are in a discrete spectrum gave following values: 5.6 fm and 7.4 fm, which is much larger than the radius of the valence neutron in the ground state. But strictly the…

haloilmiötAstrophysics::Cosmology and Extragalactic AstrophysicsneutronithalosAstrophysics::Galaxy Astrophysics
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Asymptotic normalization coefficients and halo radii of12B in the excited states

2017

We present the results of measurements and analysis of the differential cross sections of the 11 B(d, p )12 B reaction leading to formation of the 1+ ground state and the 0.953-MeV 2+ , 1.674-MeV 2− , 2.621-MeV 1− , 2.723-MeV 0+ , 3.389-MeV 3− excited states of 12 B at Ed = 21.5 MeV. The analysis of the data was carried out within the coupled-reaction-channels method for the direct neutron transfer and the Hauser-Feshbach formalism of the statistical compound-nucleus model. We deduced the spectroscopic factors, asymptotic normalization coefficients, and rms radii of the last neutron in all states studied. The existence of the neutron halos in the 1.674-MeV 2− and 2.621-MeV 1− states was fou…

PhysicsNormalization (statistics)ta114010308 nuclear & particles physicsPhysicsQC1-999asymptoottiNuclear Theoryneutronsneutronit01 natural sciencesNuclear physicsFormalism (philosophy of mathematics)Excited stateasymptote0103 physical sciencesPhysics::Accelerator PhysicsNeutronHaloNuclear Experiment010306 general physicsGround stateOrbital momentumEPJ Web of Conferences
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Neutron halos in the excited states of B12

2018

The differential cross sections of the $^{11}\mathrm{B}(d,p)\phantom{\rule{0.16em}{0ex}}^{12}\mathrm{B}$ reaction leading to formation of the ${1}^{+}$ ground state and the 0.95-MeV ${2}^{+}$, 1.67-MeV ${2}^{\ensuremath{-}}$, 2.62-MeV ${1}^{\ensuremath{-}}$, 2.72-MeV ${0}^{+}$, and 3.39-MeV ${3}^{\ensuremath{-}}$ excited states of $^{12}\mathrm{B}$ are measured at ${E}_{d}$ = 21.5 MeV. The analysis of the data is carried out within the coupled-reaction-channels method for the direct neutron transfer and the Hauser-Feshbach formalism of the statistical compound-nucleus model. The spectroscopic factors, asymptotic normalization coefficients, and rms radii of the last neutron in all states stu…

Physicsta114electromagnetic moments010308 nuclear & particles physicsNuclear Theorynucleon distributiondirect reactions01 natural sciencescluster modelsExcited state0103 physical sciencesbooritransfer reactionsPhysics::Accelerator PhysicsNeutronspectroscopic factorsHaloAtomic physicsydinfysiikkaNuclear Experiment010306 general physicsGround statePhysical Review C
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