On three-cluster disintegration of 9Be

We study a process of the photodisintegration of some Borromean light nuclei into three clusters. This study is performed within a three-cluster microscopic model. In Reference [1] this model was applied to obtain parameters of resonance states in 9Be and 9B and to establish their nature. Main aim...

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Main Authors: V. S. Vasilevsky, K. Kato
Format: Article
Language:English
Published: Al-Farabi Kazakh National University 2019-07-01
Series:Physical Sciences and Technology
Online Access:http://phst/index.php/journal/article/view/162
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author V. S. Vasilevsky
K. Kato
author_facet V. S. Vasilevsky
K. Kato
author_sort V. S. Vasilevsky
collection DOAJ
description We study a process of the photodisintegration of some Borromean light nuclei into three clusters. This study is performed within a three-cluster microscopic model. In Reference [1] this model was applied to obtain parameters of resonance states in 9Be and 9B and to establish their nature. Main aim of the present investigations is to describe the dipole transition probability from the ground state of 9Be to the states of three-cluster α+α+n continuum by using the same model. That model exploits the hyperspherical harmonics basis (HHB) and thus reduces many-channel Schrödinger equation to the algebraic matrix (AM) form. The dipole transitions from the ground 3/2- state to the 1/2+ states of three-cluster continuum were studied in detail. The role of resonance states in three-cluster continuum to this process is investigated in detail. The dominant channels with the maximal dipole strength due to the coupling between the ground and scattering states are discovered
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spelling doaj.art-c46a5adb88bc4ce2a0062095ed8a990a2023-10-30T13:11:05ZengAl-Farabi Kazakh National UniversityPhysical Sciences and Technology2409-61212019-07-0161-2On three-cluster disintegration of 9BeV. S. VasilevskyK. Kato We study a process of the photodisintegration of some Borromean light nuclei into three clusters. This study is performed within a three-cluster microscopic model. In Reference [1] this model was applied to obtain parameters of resonance states in 9Be and 9B and to establish their nature. Main aim of the present investigations is to describe the dipole transition probability from the ground state of 9Be to the states of three-cluster α+α+n continuum by using the same model. That model exploits the hyperspherical harmonics basis (HHB) and thus reduces many-channel Schrödinger equation to the algebraic matrix (AM) form. The dipole transitions from the ground 3/2- state to the 1/2+ states of three-cluster continuum were studied in detail. The role of resonance states in three-cluster continuum to this process is investigated in detail. The dominant channels with the maximal dipole strength due to the coupling between the ground and scattering states are discovered http://phst/index.php/journal/article/view/162
spellingShingle V. S. Vasilevsky
K. Kato
On three-cluster disintegration of 9Be
Physical Sciences and Technology
title On three-cluster disintegration of 9Be
title_full On three-cluster disintegration of 9Be
title_fullStr On three-cluster disintegration of 9Be
title_full_unstemmed On three-cluster disintegration of 9Be
title_short On three-cluster disintegration of 9Be
title_sort on three cluster disintegration of 9be
url http://phst/index.php/journal/article/view/162
work_keys_str_mv AT vsvasilevsky onthreeclusterdisintegrationof9be
AT kkato onthreeclusterdisintegrationof9be