Periodic-Orbit Bifurcation and Shell Structure in Reflection-Asymmetric Deformed Cavity : Nuclear Physics
スポンサーリンク
概要
- 論文の詳細を見る
Shell structure of the single-particle spectrum for a reflection-asymmetric deformed cavity is investigated. Clear shell structure emerges for certain combinations of quadrupole and octupole deformations. Semiclassical periodic-orbit analysis indicates that simultaneous bifurcations of short periodic orbits in the equatorial plane play predominant roles in the formation of this new shell structure.
- 理論物理学刊行会の論文
- 1998-09-25
著者
-
松柳 研一
Theoretical Nuclear Physics Laboratory Riken Nishina Center:yukawa Institute For Theoretical Physics
-
Arita Ken-ichiro
Department Of Physics Nagoya Institute Of Technology
-
Arita Ken-ichiro
Department Of Physics Kyoto University
-
MATSUYANAGI Kenichi
Department of Physics, Graduate School of Science, Kyoto University
-
SUGITA Ayumu
Department of Physics,Graduate School of Science,Kyoto University
-
Matsuyanagi Kenichi
Theoretical Nuclear Physics Laboratory Riken Nishina Center
-
Matsuyanagi Kenichi
Department Of Physics Graduate School Of Science Kyoto University
-
Sugita Ayumu
Department Of Physics Graduate School Of Science Kyoto University
-
Sugita Ayumu
Department Of Applied Physics Osaka City University
関連論文
- A Model Analysis of Triaxial Deformation Dynamics in Oblate-Prolate Shape Coexistence Phenomena(Nuclear Physics)
- 有限量子系のシェル構造と古典周期軌道
- 29a-F-10 殻構造の形成に対する共鳴周期軌道の役割
- 29p-X-10 巨大変形核の殻構造と古典周期軌道
- 29p-ZN-9 超変形核のスーパーシェル構造と古典軌道の分岐現象
- 2p-D-9 反転非対称な超変形核におけるスーパーシェル構造の半古典的解析
- Microscopic Derivation of Collective Hamiltonian by Means of the Adiabatic Self-Consistent Collective Coordinate Method : Shape Mixing in Low-Lying States of ^Se and ^Kr(Nuclear Physics)
- Microscopic Description of Shape Coexistence Phenomena around ^Se and ^Kr(International Workshop on Nuclear Structure-New Pictures in the Extended Isospin Space(NS07)-)
- Gauge-Invariant Formulation of the Adiabatic Self-Consistent Collective Coordinate Method(Nuclear Physics)
- Effects of Time-Odd Components in Mean Field on Large Amplitude Collective Dynamics (Nuclear Physics)