Professor Walter Greiner, our mentor, colleague, and friend, passed away in the age of eighty. During his lifetime, the search for elements beyond uranium started and elements up to the so far heaviest one with atomic number 118 were discovered. In this talk I will present a short history from early searches for ‘trans-uraniums’ up to the production and safe identification of shell-stabilized ‘Super-Heavy Nuclei’ (SHN). The nuclear shell model reveals that these nuclei should be located in a region with closed shells for the protons at Z = 114, 120 or 126 and for the neutrons at N = 184. The outstanding aim of experimental investigations is the exploration of this region of spherical SHN. Systematic studies of heavy ion reactions for the sy...
The question "How heavy can an atomic nucleus be?" is a fundamental problem in nuclear physics. The ...
Abstract. There are only 3 methods for the production of heavy and superheavy (SH) nuclei, namely, f...
There are only 3 methods for the production of heavy and superheavy (SH) nuclei, namely, fusion reac...
Professor Walter Greiner, our mentor, colleague, and friend, passed away in the age of eighty. Durin...
With his theoretical work Walter Greiner, our mentor, pioneered super heavy element research and mot...
The nuclear shell model predicts that the next doubly magic shell-closure beyond "2"0"...
The present limits of the upper part of the nuclear map are rather close to the beta stability line ...
Summary form only given. Soon after the experiments at Dubna, which synthesized element 114 and made...
We discuss the sequence of developments that over the past 90 years led to current insights on heavy...
We discuss the sequence of developments that over the past 90 years led to current insights on heavy...
The quest for the heaviest nuclei that can exist is a basic topic in natural science as their stabil...
The question “How heavy can an atomic nucleus be?” is a fundamental problem in nuclear physics. The ...
In nuclear physics, superheavy and hypernuclei are two of the most important fields of research. The...
In nuclear physics, superheavy and hypernuclei are two of the most important fields of research. The...
The research of exotic, short-lived nuclei is a main contribution of modern nuclear physics to impro...
The question "How heavy can an atomic nucleus be?" is a fundamental problem in nuclear physics. The ...
Abstract. There are only 3 methods for the production of heavy and superheavy (SH) nuclei, namely, f...
There are only 3 methods for the production of heavy and superheavy (SH) nuclei, namely, fusion reac...
Professor Walter Greiner, our mentor, colleague, and friend, passed away in the age of eighty. Durin...
With his theoretical work Walter Greiner, our mentor, pioneered super heavy element research and mot...
The nuclear shell model predicts that the next doubly magic shell-closure beyond "2"0"...
The present limits of the upper part of the nuclear map are rather close to the beta stability line ...
Summary form only given. Soon after the experiments at Dubna, which synthesized element 114 and made...
We discuss the sequence of developments that over the past 90 years led to current insights on heavy...
We discuss the sequence of developments that over the past 90 years led to current insights on heavy...
The quest for the heaviest nuclei that can exist is a basic topic in natural science as their stabil...
The question “How heavy can an atomic nucleus be?” is a fundamental problem in nuclear physics. The ...
In nuclear physics, superheavy and hypernuclei are two of the most important fields of research. The...
In nuclear physics, superheavy and hypernuclei are two of the most important fields of research. The...
The research of exotic, short-lived nuclei is a main contribution of modern nuclear physics to impro...
The question "How heavy can an atomic nucleus be?" is a fundamental problem in nuclear physics. The ...
Abstract. There are only 3 methods for the production of heavy and superheavy (SH) nuclei, namely, f...
There are only 3 methods for the production of heavy and superheavy (SH) nuclei, namely, fusion reac...