Chirality and Wobbling in Atomic Nuclei
Herausgeber: Petrache, Costel Marian
Chirality and Wobbling in Atomic Nuclei
Herausgeber: Petrache, Costel Marian
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The book provides an introduction to both theoretical and experimental results on chirality and wobbling in atomic nuclei.
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The book provides an introduction to both theoretical and experimental results on chirality and wobbling in atomic nuclei.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 320
- Erscheinungstermin: 10. Dezember 2024
- Englisch
- Abmessung: 254mm x 178mm
- Gewicht: 790g
- ISBN-13: 9781032691282
- ISBN-10: 103269128X
- Artikelnr.: 70942890
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 320
- Erscheinungstermin: 10. Dezember 2024
- Englisch
- Abmessung: 254mm x 178mm
- Gewicht: 790g
- ISBN-13: 9781032691282
- ISBN-10: 103269128X
- Artikelnr.: 70942890
Costel Marian Petrache is a Professor of Physics at University Paris-Saclay, CNRS/IN2P3 IJClab, France. After completing his PhD in Physics at the University of Bucharest, Petrache has held several research positions in Romania, France and Italy. His research interests include nuclear spectroscopy of nuclei far from the valley of stability, nuclear structure in extreme conditions (high spins and large deformations), symmetries in nuclei, and Physics applied to art and archaeology. Petrache is a scientific referee for several scientific journals, including Physical Review Letters, Physics Letters B, and Physical Review C. He organized the series of conferences Shapes and Symmetries in Nuclei: from Experiment to Theory (SSNET), and most recently organized the conference "Chirality and Wobbling in Atomic Nuclei" (Huizhou, China, 2023).
Chapter 1: History and Future Perspectives on Chirality and Wobbling in
Atomic Nuclei. Chapter 2: Wobbling Motion in Triaxial Nuclei. Chapter 3:
The 25th Anniversary for Nuclear Chirality. Chapter 4: Algebraic
Description of Wobbling Motion in Nuclei. Chapter 5: Recent Experimental
Results on Chirality and Wobbling Motion in Triaxially Deformed Nuclei.
Chapter 6: Tilted Precession and Wobbling in Triaxial Nuclei. Chapter 7:
Experimental Search for Non-Chiral to Chiral Configuration Transition in
126,128 Isotopes. Chapter 8: Semiclassical Feature of Wobbling and Chiral
Properties in Atomic Nuclei. Chapter 9: Nuclear Chiral Dynamics within
Time-Dependent Covariant Density Functional Theory. Chapter 10: Study of
Wobbling Motion with CDFT+PRM Approach. Chapter 11: Recent Developments and
Novel Applications of the Interacting Boson-Fermion Model. Chapter 12:
Microscopic Investigation of Wobbling Motion in Atomic Nuclei Using the
Triaxial Projected Shell Model Approach. Chapter 13: Spin Dynamics of
Triaxial Nuclei with Quasiparticle Alignments. Chapter 14: Recent Progress
on Nuclear Chiral and Wobbling Motions Based on the Triaxial Projected
Shell Model. Chapter 15: Studies of Nuclear Chirality in A¿80 Mass Region.
Chapter 16: Recent Progress in Nuclear Chirality of Cesium Isotopes.
Chapter 17: Collective Model for Multiple Chiral Doublets Bands and
Wobbling Bands. Index.
Atomic Nuclei. Chapter 2: Wobbling Motion in Triaxial Nuclei. Chapter 3:
The 25th Anniversary for Nuclear Chirality. Chapter 4: Algebraic
Description of Wobbling Motion in Nuclei. Chapter 5: Recent Experimental
Results on Chirality and Wobbling Motion in Triaxially Deformed Nuclei.
Chapter 6: Tilted Precession and Wobbling in Triaxial Nuclei. Chapter 7:
Experimental Search for Non-Chiral to Chiral Configuration Transition in
126,128 Isotopes. Chapter 8: Semiclassical Feature of Wobbling and Chiral
Properties in Atomic Nuclei. Chapter 9: Nuclear Chiral Dynamics within
Time-Dependent Covariant Density Functional Theory. Chapter 10: Study of
Wobbling Motion with CDFT+PRM Approach. Chapter 11: Recent Developments and
Novel Applications of the Interacting Boson-Fermion Model. Chapter 12:
Microscopic Investigation of Wobbling Motion in Atomic Nuclei Using the
Triaxial Projected Shell Model Approach. Chapter 13: Spin Dynamics of
Triaxial Nuclei with Quasiparticle Alignments. Chapter 14: Recent Progress
on Nuclear Chiral and Wobbling Motions Based on the Triaxial Projected
Shell Model. Chapter 15: Studies of Nuclear Chirality in A¿80 Mass Region.
Chapter 16: Recent Progress in Nuclear Chirality of Cesium Isotopes.
Chapter 17: Collective Model for Multiple Chiral Doublets Bands and
Wobbling Bands. Index.
Chapter 1: History and Future Perspectives on Chirality and Wobbling in
Atomic Nuclei. Chapter 2: Wobbling Motion in Triaxial Nuclei. Chapter 3:
The 25th Anniversary for Nuclear Chirality. Chapter 4: Algebraic
Description of Wobbling Motion in Nuclei. Chapter 5: Recent Experimental
Results on Chirality and Wobbling Motion in Triaxially Deformed Nuclei.
Chapter 6: Tilted Precession and Wobbling in Triaxial Nuclei. Chapter 7:
Experimental Search for Non-Chiral to Chiral Configuration Transition in
126,128 Isotopes. Chapter 8: Semiclassical Feature of Wobbling and Chiral
Properties in Atomic Nuclei. Chapter 9: Nuclear Chiral Dynamics within
Time-Dependent Covariant Density Functional Theory. Chapter 10: Study of
Wobbling Motion with CDFT+PRM Approach. Chapter 11: Recent Developments and
Novel Applications of the Interacting Boson-Fermion Model. Chapter 12:
Microscopic Investigation of Wobbling Motion in Atomic Nuclei Using the
Triaxial Projected Shell Model Approach. Chapter 13: Spin Dynamics of
Triaxial Nuclei with Quasiparticle Alignments. Chapter 14: Recent Progress
on Nuclear Chiral and Wobbling Motions Based on the Triaxial Projected
Shell Model. Chapter 15: Studies of Nuclear Chirality in A¿80 Mass Region.
Chapter 16: Recent Progress in Nuclear Chirality of Cesium Isotopes.
Chapter 17: Collective Model for Multiple Chiral Doublets Bands and
Wobbling Bands. Index.
Atomic Nuclei. Chapter 2: Wobbling Motion in Triaxial Nuclei. Chapter 3:
The 25th Anniversary for Nuclear Chirality. Chapter 4: Algebraic
Description of Wobbling Motion in Nuclei. Chapter 5: Recent Experimental
Results on Chirality and Wobbling Motion in Triaxially Deformed Nuclei.
Chapter 6: Tilted Precession and Wobbling in Triaxial Nuclei. Chapter 7:
Experimental Search for Non-Chiral to Chiral Configuration Transition in
126,128 Isotopes. Chapter 8: Semiclassical Feature of Wobbling and Chiral
Properties in Atomic Nuclei. Chapter 9: Nuclear Chiral Dynamics within
Time-Dependent Covariant Density Functional Theory. Chapter 10: Study of
Wobbling Motion with CDFT+PRM Approach. Chapter 11: Recent Developments and
Novel Applications of the Interacting Boson-Fermion Model. Chapter 12:
Microscopic Investigation of Wobbling Motion in Atomic Nuclei Using the
Triaxial Projected Shell Model Approach. Chapter 13: Spin Dynamics of
Triaxial Nuclei with Quasiparticle Alignments. Chapter 14: Recent Progress
on Nuclear Chiral and Wobbling Motions Based on the Triaxial Projected
Shell Model. Chapter 15: Studies of Nuclear Chirality in A¿80 Mass Region.
Chapter 16: Recent Progress in Nuclear Chirality of Cesium Isotopes.
Chapter 17: Collective Model for Multiple Chiral Doublets Bands and
Wobbling Bands. Index.