6533b830fe1ef96bd1297a82
RESEARCH PRODUCT
Clusterization and strong coupled-channels effects in deuteron interaction with $^9$Be nuclei
Yu. PenionzhkevichK. MendibayevJ. MrazekD. EtasseKairat KuterbekovSergei LukyanovV. BurjanT. IssatayevDavid VerneyV. KrohaT. K. ZholdybayevNunzio ItacoMohsen HarakehD. JanseitovI. StefanA. S. DenikinBakytzhan UrazbekovWlasyslaw Trzaskasubject
Elastic scatteringPhysicsNuclear and High Energy Physicselastic and inelastic scattering010308 nuclear & particles physicsNuclear TheoryAnalytical chemistryDWBAAlpha particleDALT[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]spectroscopic amplitudes01 natural sciencescluster structureCRCdouble foldingInteraction potentialDeuterium0103 physical sciencesoptical model010306 general physicsWave functionNuclear Experimentdescription
Angular distributions of protons, deuterons, tritons and alpha particles emitted in the d + alt;supagt;9alt;/supagt;Be reaction at Ealt;subagt;labalt;/subagt;=19.5 and 35.0 MeV have been measured.a#13; The elastic scattering channel is analysed in the framework of both the Optical Model and the Coupled-Channel approach. a#13; The interaction potential of the alt;iagt;dalt;/iagt; + alt;supagt;9alt;/supagt;Be system is calculated in the framework of the Double-Folding model using the α+α+alt;iagt;nalt;/iagt; three-body wave function of the alt;supagt;9alt;/supagt;Be nucleus.a#13; The (alt;iagt;dalt;/iagt;,alt;iagt;palt;/iagt;) and (alt;iagt;dalt;/iagt;,alt;iagt;talt;/iagt;) one-nucleon-transfer reactions are analysed within the coupled-reaction-channel approach. a#13; The spectroscopic amplitudes for the different nuclear cluster configurations are calculated. a#13; Differential cross sections for the reaction channel alt;supagt;9alt;/supagt;Be(alt;iagt;dalt;/iagt;,α)alt;supagt;7alt;/supagt;Li are calculated including all possible reaction mechanisms within the coupled-reaction-channel method. a#13; Corresponding contributions to the cross sections are analysed.
year | journal | country | edition | language |
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2019-09-02 |