Title of article :
Using continuum level density in the pairing Hamiltonian: BCS and exact solutions
Author/Authors :
R. Id Betan، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2012
Pages :
11
From page :
14
To page :
24
Abstract :
Pairing plays a central role in nuclear systems. The simplest model for the pairing is the constant-pairing Hamiltonian. The aim of the present paper is to include the continuum single particle level density in the constant-pairing Hamiltonian and to make a comparison between the approximate BCS and the exact Richardson solutions. The continuum is introduced by using the continuum single particle level density. It is shown that the continuum makes an important contribution to the pairing parameter even in those case when the continuum is weakly populated. It is shown that while the approximate BCS solution depends on the model space the exact Richardson solution does not.
Keywords :
?3np) , ?n2p?) , measured , ??) , ?2?) , I?I? using recoil catcher technique , (20Ne , (20Ne , deduced , ?2n?) , ?n2?) , Direct , (20Ne , (20Ne , cumulative yields , ?3n?) , ?2n2?) , ICF ? , (20Ne , (20Ne , total ? , ?4n?) , ?3n2?) , critical angular momentum , (20Ne , (20Ne , mass-asymmetry effect , NUCLEAR REACTIONS , ?3np?) , ?4n2?) , calculated , (20Ne , (20Ne , (20Ne , statistical model with Monte Carlo de-excitation with different level density parameters , ?3n) , ?4np?) , ?3np2?) , Yields , (20Ne , (20Ne , E=88–165 MeVE=88–165 MeV , 165Ho(20Ne , (20Ne , (20Ne , ? , ?2np) , ?6np?) , ?3n4?) , ICF fraction compared with literature data for other systems , (20Ne , (20Ne , ER E?E?
Journal title :
Nuclear physics A
Serial Year :
2012
Journal title :
Nuclear physics A
Record number :
1203984
Link To Document :
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