Study of the \({}^{{6}}\)Li \({0}^{{+}}\) Excited State

IF 0.3 4区 物理与天体物理 Q4 PHYSICS, NUCLEAR
S. S. Stukalov, Yu. G. Sobolev, Yu. E. Penionzhkevich, N. Burtebayev, S. A. Goncharov, Yu. B. Gurov, A. N. Danilov, A. S. Demyanova, S. V. Dmitriev, M. Nassurlla, V. I. Starastsin, A. V. Shakhov, S. K. Raidun
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引用次数: 0

Abstract

\({}^{7}\)Li elastic scattering and the lithium-induced reaction of one-nucleon transfers from \({}^{10}\)B(\({}^{7}\)Li, \({}^{6}\)Li)\({}^{11}\)B have been measured at \(E_{\textrm{LAB}}\)(\({}^{7}\)Li) = 58 MeV using U-400 accelerator beam of the FLNR JINR, Dubna. Angular distribution for reaction \({}^{10}\)B(\({}^{7}\)Li, \({}^{6}\)Li)\({}^{11}\)B with excitation of the 3.56 MeV state (\({}^{6}\textrm{Li}^{*}\)) is presented for the first time. The ‘‘Finite Range Distorted Wave Born Approximation’’ (FRDWBA) analysis of the differential cross section of the \({}^{10}\)B(\({}^{7}\)Li, \({}^{6}\)Li)\({}^{11}\)B ground state (g.s.) transition and excited (\(J^{\pi}=0^{+}\), \(T=1\), \(E=3.56\) MeV) state of \({}^{6}\)Li transition was performed. Phenomenological approach based on solving an approximate equation for the reaction form factor was used to determine its radial dependence and empirical values of asymptotic normalization coefficient (ANC). The obtained values of ANC for the \({}^{6}\)Li\({}_{\textrm{g.s}}\) and \({}^{6}\textrm{Li}^{*}\)(3.56 MeV) states are in agreement with the literature ones. Comparison of the radial dependences of form factors shows that the wave function of the \({}^{6}\)Li nucleus in excited (\(J^{\pi}=0^{+}\), \(T=1\), \(E=3.56\) MeV) state has increased spatial dimension compared to the ground state. This result is an argument in favor of a halo existence in \({}^{6}\textrm{Li}^{*}\)(3.56 MeV) state, while the question of a halo in \({}^{6}\)Li\({}_{\textrm{g.s.}}\) still stays open.

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来源期刊
Physics of Atomic Nuclei
Physics of Atomic Nuclei 物理-物理:核物理
CiteScore
0.60
自引率
25.00%
发文量
56
审稿时长
3-6 weeks
期刊介绍: Physics of Atomic Nuclei is a journal that covers experimental and theoretical studies of nuclear physics: nuclear structure, spectra, and properties; radiation, fission, and nuclear reactions induced by photons, leptons, hadrons, and nuclei; fundamental interactions and symmetries; hadrons (with light, strange, charm, and bottom quarks); particle collisions at high and superhigh energies; gauge and unified quantum field theories, quark models, supersymmetry and supergravity, astrophysics and cosmology.
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