Tetrahedral symmetry in nuclei: Search for its fingerprints in the Actinide and Rare-Earth regions
Explore this paper's citation graph
- Type
- article
- Published
- 2010-01-01
- Cited by
- 5
- References
- 16
- Access
- Open access
- OpenAlex
- https://openalex.org/W1963563615
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:120983883
Keywords
Series (stratigraphy), Symmetry (geometry), Theoretical physics, Tetrahedron, Actinide
References
- The mean lives of the first excited states in 181Ta and 165Ho
- Rotational bands in 238U
- Nuclear tetrahedral symmetry: possibly present throughout the periodic table.
- Experiments using ultra-fast pulse techniques
- The level structure of 156Gd studied by means of the (α, 2nγ) reaction
- A new version of the microwave method
- Deformed atomic nuclei with degeneracies of the nucleonic levels higher than 2.
- Nuclear Data Sheets for A = 222
- NUCLEI WITH TETRAHEDRAL SYMMETRY
- Mesure de durées de vie au moyen de champs hyperfréquences
- Collective E1 transitions in even-A Ra, Th, and U nuclei
- Nuclear Tetrahedral Symmetry
- Tetrahedral symmetry in ground and low-lying states of exotic A∼110 nuclei
- Near yrast discrete line gamma-ray spectroscopy in 156Dy up to spin 40kh
- In-beam spectroscopy of thekπ=0− bands in230–236U
- Nuclear Data Sheets for A = 156
- Int. J. Mod. Phys.
- Nuclei with Tetrahedral Symmetry
- NUCLEAR TETRAHEDRAL SYMMETRY
Cited by
- Effects of symmetry breaking in finite quantum systems
- In-beam spectroscopy of 72Ge
- Mean-field theory of nuclear stability and exotic point-group symmetries
- Higher-rank discrete symmetries in the IBM. I Octahedral shapes: general Hamiltonian
- Higher-rank discrete symmetries in the IBM. II Octahedral shapes: Dynamical symmetries
Related papers
- Arrangement of Central Points on the Faces of a Tetrahedron
- 657, a method for estimating tetrahedral bond angles
- GEOMETRY OF THE TETRAHEDRON AND COMPUTATION OF THE FACE ANGLES OF A TETRAHEDRON WITH THE HELP OF CLANGUAGE
- Volume Of A Tetrahedron Revisited
- Uniform Refinement of a Tetrahedron
- On pedal tetrahedra
- Why is the tetrahedral bond angle 109°? The tetrahedron-in-a-cube
- Modeling of Spherical Tetrahedron Shaped Body Impact: Part 2 Impact against a tip of Fixed Spherical Tetrahedron
- Recovering a Circumscriptible Tetrahedron from Its Face Areas
- New Ni-Pt Carbonyl Clusters with a Tetrahedron of Platinum Atoms Encapsulated in an Incomplete Tetrahedron of Nickel Atoms: [Ni36 Pt4 (CO)45 ]6- and [Ni37 Pt4 (CO)46 ]6- .