...
首页> 外文期刊>Physics of atomic nuclei >Semiclassical Approaches to Nuclear Dynamics
【24h】

Semiclassical Approaches to Nuclear Dynamics

机译:核动力学的二氧化碳方法

获取原文
           

摘要

The extended Gutzwiller trajectory approach is presented for the semiclassical description of nuclear collective dynamics, in line with the main topics of the fruitful activity of V.G. Solovjov. Within the Fermi-liquid droplet model, the leptodermous effective surface approximation was applied to calculations of energies, sum rules, and transition densities for the neutron-proton asymmetry of the isovector giant-dipole resonance and found to be in good agreement with the experimental data. By using the Strutinsky shell correction method, the semiclassical collective transport coefficients, such as nuclear inertia, friction, stiffness, and moments of inertia, can be derived beyond the quantum perturbation approximation of the response function theory and the cranking model. The averaged particle-number dependences of the low-lying collective vibrational states are described in good agreement with the basic experimental data, mainly due to the enhancement of the collective inertia as compared to its irrotational flow value. Shell components of the moment of inertia are derived in terms of the periodic-orbit free-energy shell corrections. A good agreement between the semiclassical extended Thomas-Fermi moments of inertia with shell corrections and the quantum results is obtained for different nuclear deformations and particle numbers. Shell effects are shown to be exponentially dampted out with increasing temperature in all the transport coefficients.
机译:延长的Gutzwiller轨迹方法是为核集体动态的半导体描述,符合V.G的富有成效活动的主要话题。 solovjov。在FERMI-液滴模型中,肽有效表面近似用于计算能源,和规则和中子巨型偶极子谐振的中子质子不对称的转变密度,发现与实验数据很好。通过使用Strutinsky壳校正方法,可以推导出半核集体传输系数,例如核惯性,摩擦,刚度和惯性矩,超出响应函数理论和曲柄模型的量子扰动近似。与基本实验数据吻合吻合良好的一致性地描述了低洼集体振动状态的平均粒子数依赖性,主要是由于与其无测流量值相比的集体惯性的增强。惯性矩的壳体组分是在周期性轨道自由能壳校正方面导出的。为不同的核变形和颗粒数获得了具有壳校正和量子结果的半定碱基延伸托马斯 - 费米惯性惯量之间的良好一致性。显示壳体效果在所有传输系数中的温度升高时被指向下降。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号