We introduce the so-called Tohsaki-Horiuchi-Schuck-Röpke (THSR) wave function to describe various nuclear cluster states. Its importance, applicability, and usefulness are extensively discussed in this report. It is demonstrated that the THSR wave function provides a “container” picture for cluster structures and even an evolution of the container, for a couple of typical examples, such as 20Ne, 12C, and 16O nuclei
4 pages, 4 figures, submitted for publicationNucleonic matter displays a quantum liquid structure, b...
Abstract. The properties of few-body clusters (mass number A ≤ 4) are modified if they are immersed ...
International audienceNucleon localization, and formation of clusters in nucleonic matter and finite...
We introduce the so-called Tohsaki-Horiuchi-Schuck-Röpke (THSR) wave function to describe various nu...
We discuss a container structure for non-gaslike cluster states, in which single Tohsaki-Horiuchi-Sc...
34 pages, 28 figuresA container picture is proposed for understanding cluster dynamics where the clu...
Cluster structures in nuclei have been studied for half a century and one central problem is how to ...
We investigate the α+16O cluster structure in the inversion-doublet band (Kπ=01±) states of 20Ne wit...
We propose a generalized wave function based on the flexible original THSR (Tohsaki, Horiuchi, Schuc...
The picture of alpha condensation is extended to a general concept of nonlocalized clustering, which...
A new concept of clustering is discussed in hypernuclei using a new-type microscopic clus-ter model...
International audienceWe present a microscopic calculation of α-cluster formation in heavy nuclei by...
The framework of nuclear energy density functionals is applied to a study of the formation and evolu...
The framework of nuclear energy density functionals is applied to a study of the formation and evolu...
Certain aspects of the recently proposed antisymmetrized α-particle product state wave function, or ...
4 pages, 4 figures, submitted for publicationNucleonic matter displays a quantum liquid structure, b...
Abstract. The properties of few-body clusters (mass number A ≤ 4) are modified if they are immersed ...
International audienceNucleon localization, and formation of clusters in nucleonic matter and finite...
We introduce the so-called Tohsaki-Horiuchi-Schuck-Röpke (THSR) wave function to describe various nu...
We discuss a container structure for non-gaslike cluster states, in which single Tohsaki-Horiuchi-Sc...
34 pages, 28 figuresA container picture is proposed for understanding cluster dynamics where the clu...
Cluster structures in nuclei have been studied for half a century and one central problem is how to ...
We investigate the α+16O cluster structure in the inversion-doublet band (Kπ=01±) states of 20Ne wit...
We propose a generalized wave function based on the flexible original THSR (Tohsaki, Horiuchi, Schuc...
The picture of alpha condensation is extended to a general concept of nonlocalized clustering, which...
A new concept of clustering is discussed in hypernuclei using a new-type microscopic clus-ter model...
International audienceWe present a microscopic calculation of α-cluster formation in heavy nuclei by...
The framework of nuclear energy density functionals is applied to a study of the formation and evolu...
The framework of nuclear energy density functionals is applied to a study of the formation and evolu...
Certain aspects of the recently proposed antisymmetrized α-particle product state wave function, or ...
4 pages, 4 figures, submitted for publicationNucleonic matter displays a quantum liquid structure, b...
Abstract. The properties of few-body clusters (mass number A ≤ 4) are modified if they are immersed ...
International audienceNucleon localization, and formation of clusters in nucleonic matter and finite...