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角动量投影的粒子数守恒方法
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作者 廖继志 《中国科学(A辑)》 CSCD 1999年第3期252-257,共6页
在粒子数守恒 (PNC)波函数的角动量投影的基础上建立了一种新的处理对关联和低激发态核谱和性质的微观理论 .在此理论中首先完成核基态的形变Hartree Fock(DHF)计算得到DHF单粒子能级 ,再据此构造PNC波函数 ,然后对其进行角动量投影得... 在粒子数守恒 (PNC)波函数的角动量投影的基础上建立了一种新的处理对关联和低激发态核谱和性质的微观理论 .在此理论中首先完成核基态的形变Hartree Fock(DHF)计算得到DHF单粒子能级 ,再据此构造PNC波函数 ,然后对其进行角动量投影得到好角动量的PNC波函数和对应的能谱 . 展开更多
关键词 粒子数守恒法 原子核细胞 角动量投影 微观理论
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^(182)O_s核的推转壳模型处理
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作者 刘欣 林辛未 《西南师范大学学报(自然科学版)》 CAS CSCD 1996年第1期37-41,共5页
利用推转壳模型的粒子数守恒方法计算了182Os核能谱、带交叉频率、带间相互作用强度、顺排角动量等,并对182Os核波函数的seniority结构进行了分析.在计算过程中,根据不同的阻塞情况适当考虑了Coriolis减... 利用推转壳模型的粒子数守恒方法计算了182Os核能谱、带交叉频率、带间相互作用强度、顺排角动量等,并对182Os核波函数的seniority结构进行了分析.在计算过程中,根据不同的阻塞情况适当考虑了Coriolis减弱.结果表明,以上各种量的计算值与对应的实验值都能较好地符合. 展开更多
关键词 推转壳模型 带交叉 粒子数守恒法 原子核
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推转壳模型波函数的Seniority结构和K结构
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作者 曾谨言 吴崇试 林纯镇 《中国科学(A辑)》 CSCD 1989年第3期267-275,共9页
本文用粒子数守恒方法分析了推转单i壳模型波函数的seniority结构和K结构。随转动角频率ω增大,低激发带的seniority v结构和K结构变得很复杂。对于不太高的ω((?)ω(?)≤0.5MeV),低激发带的主要组态成分是v=0,2,4,而v≥6成分极微,可以... 本文用粒子数守恒方法分析了推转单i壳模型波函数的seniority结构和K结构。随转动角频率ω增大,低激发带的seniority v结构和K结构变得很复杂。对于不太高的ω((?)ω(?)≤0.5MeV),低激发带的主要组态成分是v=0,2,4,而v≥6成分极微,可以略去。|K|≤(?)10的各组态成分都可相比拟,表明原子核显著偏离轴对称。也研究了能隙参数和顺排角动量随ω的变化。 展开更多
关键词 原子核 推转壳模型 粒子数守恒法
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Effects of Rotation, Blocking and Octupole Deformation on Pairing Correlations in the U and Pu Isotopes
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作者 ZHANG Jun HE Xiaotao 《原子核物理评论》 CAS CSCD 北大核心 2024年第1期178-183,共6页
including octupole correlations in the Nilsson potential,the ground-state rotational bands in the reflection-asymmetric(RA)nuclei are investigated by using the cranked shell model(CSM)with the monopole and quadrupole ... including octupole correlations in the Nilsson potential,the ground-state rotational bands in the reflection-asymmetric(RA)nuclei are investigated by using the cranked shell model(CSM)with the monopole and quadrupole pairing correlations treated by a particle-number-conserving(PNC)method.The experimental kinematic moments ofinertia(Mols)for alternating-parity bands in the even-even nuclei ^(236,238)U and ^(238,240)Pu,as well as paritydoublet bands in the odd-A nuclei 237U and 239Pu are reproduced well by the PNC-CSM calculations.The higher J(1)for the intrinsic s=-i bands in ^(237)U and ^(239)Pu,compared with the s=+1 bands in the neighboring even-even nuclei ^(236,238)U and ^(238,240)Pu,can be attributed to the pairing gap reduction due to the Pauli blocking effect.The gradual increase of J(i)versus rotational frequency can be explained by the pairing gap reduction due to the rotation.The Mols of reflection-asymmetric nuclei are higher than those of reflection-symmetric(RS)nuclei at low rotational frequency.Moreover,the inclusion of a larger octupole deformation 8,in the RA nuclei results in more significant pairing gap reduction compared with the RS nuclei. 展开更多
关键词 octupole correlations cranked shell model particle-number-conserving method alternating-parity bands parity-doublet bands pairing correlations
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Rotational properties of the odd-Z transfermium nucleus ^(255)Lr by a particle-number-conserving method in the cranked shell model
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作者 Yu-Chun Li Xiao-Tao He 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2016年第7期25-32,共8页
Experimentally observed ground state band based on the 1/2-[521] Nilsson state and the first exited band based on the 7/2-[514] Nilsson state of the odd-Z nucleus 255Lr are studied by the cranked shell model (CSM) w... Experimentally observed ground state band based on the 1/2-[521] Nilsson state and the first exited band based on the 7/2-[514] Nilsson state of the odd-Z nucleus 255Lr are studied by the cranked shell model (CSM) with the paring correlations treated by the particle-number-conserving (PNC) method. This is the first time the detailed theoretical investigations are performed on these rotational bands. Both experimental kinematic and dynamic moments of inertia (f^(1) and ,f^(2) versus rotational frequency are reproduced quite well by the PNC-CSM calculations. By comparing the theoretical kinematic moment of inertia f(1) with the experimental ones extracted from different spin assignments, the spin 17/2- →13/2- is assigned to the lowest-lying 196.6(5) keV transition of the 1/2- [521 ] band, and 15/2→11/2- to the 189(1) keV transition of the 7/2- [514] band, respectively. The proton N = 7 major shell is included in the calculations. The intruder of the high-j low→lj15/2 (1/2-[770]) orbital at the high spin leads to band-crossings at hω = 0.20 (hω~=0.25) MeV for the 7/2-[514]ω= -1/2 (ω= +1/2) band, and at hω=0.175 MeV for the 1/2- [521 ] ω= - 1/2 band, respectively. Further investigations show that the band-crossing frequencies are quadrupole deformation dependent. 展开更多
关键词 rotational band spin assignment band-crossing high-j orbital transfermium nuclei
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Investigation of the two-quasiparticle bands in the doubly-odd nucleus ^(166)Ta using a particle-number conserving cranked shell model
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作者 ZhenHua Zhang 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2016年第7期33-39,共7页
The high-spin rotational properties of two-quasiparticle bands in the doubly-odd 166Ta are analyzed using the cranked shell model with pairing correlations treated by a particle-number conserving method, in which the ... The high-spin rotational properties of two-quasiparticle bands in the doubly-odd 166Ta are analyzed using the cranked shell model with pairing correlations treated by a particle-number conserving method, in which the blocking effects are taken into account exactly. The experimental moments of inertia and alignments and their variations with the rotational frequency hw are reproduced very well by the particle-number conserving calculations, which provides a reliable support to the configuration assignments in previous works for these bands. The backbendings in these two-quasiparticle bands are analyzed by the calculated occupation probabilities and the contributions of each orbital to the total angular momentum alignments. The moments of inertia and alignments for the Gallagher-Moszkowski partners of these observed two-quasiparticle rotational bands are also predicted. 展开更多
关键词 particle-number conserving method pairing correlations moment of inertia
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