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The ENAM2001 Conference was held on July 2-7, 2001 at the Rantasipi Aulanko Hotel in Hameenlinna in southern Finland. The conference was organized by the Department of Physics and the Accelerator Laboratory of the University of Jyvaskyla with support from the Physics Departments of the Universities of Helsinki and Turku. This conference, Exotic Nuclei and Atomic Masses has now gained the status of a major nuclear physics serial conference. The previous conference was held in Bellaire, Michigan, USA. The conference was first held in 1967 in Lysekil, Sweden, then entitled Conference on Nuclei Far from Stability. ENAM2001 welcomed 270 participants from 34 countries, including 17 accompanying per sons. The content of the program was selected based on the advice of the International Advisory Committee. The Committee members read and considered 253 submitted abstracts in selecting oral contributions. During the conference week 76 invited and oral talks were given. The rest of the contributions were presented in dedicated poster sessions. Many thanks go to the speakers of oral and poster presentations for their enthusiasm and for the high quality of their work which demonstrated the liveliness of the field. Participation in the lectures was high and contributions from the audience were important towards the success of this conference. The organizers would like to especially thank Cary Davids of Argonne National Laboratory for his comprehensive summary talk, which is also included in these Proceedings.
The International Conference on Exotic Nuclei and Atomic Masses (ENAM) has gained the status of the premier meeting for the physics of nuclei far from stability. The selected and refereed papers presenting the main results constitute valuable proceedings that offer everyone working in this field an authoritative and comprehensive source of reference.
Dramatic progress has been made in all branches of physics since the National Research Council's 1986 decadal survey of the field. The Physics in a New Era series explores these advances and looks ahead to future goals. The series includes assessments of the major subfields and reports on several smaller subfields, and preparation has begun on an overview volume on the unity of physics, its relationships to other fields, and its contributions to national needs. Nuclear Physics is the latest volume of the series. The book describes current activity in understanding nuclear structure and symmetries, the behavior of matter at extreme densities, the role of nuclear physics in astrophysics and cosmology, and the instrumentation and facilities used by the field. It makes recommendations on the resources needed for experimental and theoretical advances in the coming decade.
Nuclei Far from Stability and Atomic Masses and Fundamental Constants 1992 presents a collection of 200 papers presented at two conferences that were held concurrently. Particular attention is paid to developments in the field of nuclear physics with energetic secondary beams and the increase of precision in the determination of atomic masses. Topics covered include nuclear spectroscopy and nuclear shapes, the heaviest elements, fission and cluster radioactivity, beta decay, coupling constants, neutrino mass, moments and radii, nuclei near the drip line and their structure, atomic masses, nuclear aspects in astrophysics, and experimental developments.
The proceedings of the conference on Exotic Nuclei and Atomic Masses (ENAM98) are the scientific contributions to the most recent meeting in a long series that dates back to the late 1950s. The conference is held every three years and the participants produce a complete review of the fields of exotic nuclei; atomic masses, moments and radii of nuclei; fission, synthesis of heavy elements, the role of radioactive nuclei in the cosmos, fundamental studies and use of radioactive ion beams. The proceedings provide an excellent overview and an up to date summary of recent developments in a field that is undergoing a rapid growth due to the advent of radioactive ion beams.
The monograph describes the properties of the lightest nuclei with large excess of neutrons. The results of theoretical and experimental studies of neutron-rich isotopes with 1
This volume comprises an important collection of papers dedicated to the problems of producing and investigating nuclei far from the line of stability. Together, they discuss the latest results on the production and study of the properties of the lightest to the heaviest nuclei as well as the current plans for future joint investigations in the field of exotic nuclei.The contributions from well-known experts in the field were presented at the International Symposium on Exotic Nuclei, jointly organized by four scientific centers where this field is actively pursued: Flerov Laboratory of Nuclear Reactions JINR (Dubna), RIKEN (Japan), GANIL (France), and GSI (Germany).Unique techniques for the synthesis and investigation of the properties of exotic nuclei are being developed together with the realization of large accelerator projects. The creation of these new radioactive ion beam factories requires substantial investment, and they can only be built with the support of international collaborations.
1 The Fundamental Constants and Metrology.- The Measurement of Fundamental Constants (Metrology) and Its Effect on Scientific and Technical Progress.- Constantes Physiques et Métrologie.- 2 Gamma rays.- Gamma-Ray Energies for Calibration of Ge(Li) spectrometers.- Primary Standards for Gamma Energy Determinations.- Precision Measurements of Relative ?-Ray Energies with a Curved Crystal Diffractometer.- Visible to Gamma-Ray Wavelength Ratio.- Determination of Proton Binding Energies for 89Y, 90Zr, 91Nb and 93Tc from (p, ?) Reaction Q-values.- A New Method for Measurement of Proton Beam Energies.
Broken up in to three sections, The Science of the Cold Fusion Phenomenon gives a unified explanation of all the significant data on the Cold Fusion Phenomena to date. It presents a history of the Cold Fusion Phenomenon (CFP), gives the fundamental experimental results of the CFP and presents a quantum mechanical treatment of physical problems associated with cold fusion. - Overviews the abundance of research and investigation that followed the 'cold fusion scandal' in 1989 - Explores the fundamental science behind the original Fleischmann experiment