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Nucleon ~3pF_2 Superfluid Pairing Gap in Asymmetry Nuclear Matter
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作者 MI Ai-Jun ZUO Wei +1 位作者 LI Zeng-Hua Umberto Lombardo 《Communications in Theoretical Physics》 SCIE CAS CSCD 2009年第6期1113-1116,共4页
The 3 P F2 superfluidity of neutron and proton is investigated in isospin-asymmetric nuclear matter within the Brueckner-Hartree-Fock approach and the BCS theory by adopting the Argonne V14 and the Argonne V18 nucleon... The 3 P F2 superfluidity of neutron and proton is investigated in isospin-asymmetric nuclear matter within the Brueckner-Hartree-Fock approach and the BCS theory by adopting the Argonne V14 and the Argonne V18 nucleonnucleon interactions. We find that pairing gaps in the 3PF2 channel predicted by adopting the AV14 interaction are much larger than those by the AV18 interaction. As the isospin-asymmetry increases, the neutron 3 pF2 superfluidity is found to increase rapidly, whereas the proton one turns out to decrease and may even vanish at high enough asymmetries. As a consequence, the neutron 3pF2 superfluidity is much stronger than the proton one at high asymmetries and it predominates over the proton one in dense neutron-rich matter. 展开更多
关键词 3pF2 superfluidity asymmetric nuclear matter Brueckner-Hartree-Fock approach bcs theory
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Nonadditivity in moments of inertia of high-K multiquasiparticle bands
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作者 张振华 吴熙 +1 位作者 雷奕安 曾谨言 《Chinese Physics C》 SCIE CAS CSCD 北大核心 2008年第9期681-686,共6页
The experimental high-K 2- and 3-quasiparticle bands of well deformed rare-earth nuclei are analyzed. It is found that there exists significant nonadditivity in moments of inertia (MOIs) for these bands. The microsc... The experimental high-K 2- and 3-quasiparticle bands of well deformed rare-earth nuclei are analyzed. It is found that there exists significant nonadditivity in moments of inertia (MOIs) for these bands. The microscopic mechanism of the rotational bands is investigated by the particle number conserving (PNC) method in the frame of cranked shell model with pairing, in which the blocking effects are taken care of exactly. The experimental rotational frequency dependence of these bands is well reproduced in PNC calculations. The nonadditivity in MOIs originates from the destructive interference between Pauli blocking effects. 展开更多
关键词 particle-number-conserving method bcs theory nuclear moments of inertia
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