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Launched in 2004, "Nuclear Physics in Astrophysics" has established itself in a successful topical conference series addressing the forefront of research in the field. This volume contains the selected and refereed papers of the 2nd conference, held in Debrecen in 2005 and reprinted from "The European Physical Journal A - Hadrons and Nuclei".
This volume provides up-to-date information on selected topics in nuclear physics and their future prospects. Topics discussed include nuclear astrophysics; synthesis of very heavy elements; physics with exotic nuclei; heavy ion collisions; spin-isospin excitation. This volume contains 47 papers by invited speakers and nine summaries by chairpersons.
The International Nuclear Physics Conference, held every three years, is the most pretigeous meeting of nuclear physics. Its programme covers the whole range of nuclear physics and some application, such as relativistic nuclear collisions, mesons and baryons in nuclei, hadron structure and quarks in nuclei, formation and properties of hot nuclei, nuclear reactions at low and intermediate energy, nuclear structure, radioactive nuclear beams, nuclear astrophysics, fundamental interaction and symmetries, experimental technique and new facilities, and applied nuclear physics.The proceedings is a collection of all invited talks on the plenary and parallel sessions. Presented by the leading scientists in their fields, these talks summarized the most recent progress and future prospects in all the aspects of nuclear physics.
This volume features contributions by the leading authorities on the physics of unstable nuclei. It provides an important updated source in the nuclear physics literature for the researchers and post-graduates studying nuclear physics with unstable beams around the world. The focus is on the new experimental facilities for the production of unstable beams and on the latest developments in microscopic theories of nuclear structure and reactions.
These proceedings are the fourth in the series of International Conferences covering fission and properties of neutron-rich nuclei, which are at the forefront of nuclear structure research. The time interval of 5 years between each conference allows for significant new results to be achieved. Recently, world leaders in theory and experiments in research and the development of new facilities for research presented their latest results in areas such as synthesis of superheavy elements, new facilities for and recent results with radioactive ion beams, structure of neutron-rich nuclei, nuclear fission process, fission yields and nuclear astrophysics. This book is a major source of the latest research in these areas and plans for the future. The conference brought together a unique group of over 100 speakers including the directors of the major nuclear laboratories in Canada, France, Germany, Japan, Russia and the US along with leading research scientists from around the world.
This book is a collection of talks presented at the International Symposium on Exotic Nuclei, held at Lake Baikal, Russia, on 24 - 28 July 2001. The talks were given by the leading scientists in the physics of exotic nuclei.Among the topics of the Symposium were the following: production and study of properties of nuclei in extreme states, strongly deformed nuclei, highly excited nuclei and nuclei far from the line of stability as well as nuclei having large angular momenta.New results of investigations are presented in the book ? in particular, the data on new nuclei with proton or neutron haloes, on the changes in the shell structure of nuclei near the drip lines, and on the structure of exotic nuclei, including information on the island of inversion. The latest results on the synthesis of new superheavy elements are also provided, and existing detecting devices and accelerators of exotic nuclei, as well as future projects for the creation of similar set-ups, are presented.
This book reviews recent developments in the field of superheavy elements and the related phenomena of fission, cluster radioactivity, and drip line physics. Both the experimental and theoretical aspects are dealt with in detail. For the production of new elements in the laboratory, the process of cold compound nucleus formation is found to be most favorable both theoretically and experimentally. However, experimentally, hot fusion of nuclei has also been used. Both the physical and chemical methods of synthesizing new elements are discussed. The theoretical approaches considered here are those of the quantum-mechanical fragmentation theory, the self-consistent Hartree-Fock theory, and the relativistic mean field theory. Fission, a process inverse to the fusion of two nuclei, is also observed to be most favourably a cold phenomenon. Other important results are bi-modal fission and high n-multiplicity fission, which leads to the hyperdeformed scission mode. Cluster radioactivity is discussed both as a heavy cluster emission process and as super-asymmetric fission. The theory as well as the present experimental status are reviewed. Physics at drip lines is interesting not only for their structural properties but also for their use in the fusion of two nuclei; both aspects are discussed.
These proceedings are the fourth in the series of International Conferences covering fission and properties of neutron-rich nuclei, which are at the forefront of nuclear structure research. The time interval of 5 years between each conference allows for significant new results to be achieved. Recently, world leaders in theory and experiments in research and the development of new facilities for research presented their latest results in areas such as synthesis of superheavy elements, new facilities for and recent results with radioactive ion beams, structure of neutron-rich nuclei, nuclear fission process, fission yields and nuclear astrophysics. This book is a major source of the latest research in these areas and plans for the future. The conference brought together a unique group of over 100 speakers including the directors of the major nuclear laboratories in Canada, France, Germany, Japan, Russia and the US along with leading research scientists from around the world.