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The conference was aimed at promoting contacts between scientists involved in solar-terrestrial physics, space physics, astroparticle physics and cosmology both from the theoretical and the experimental approach. The conference was devoted to physics and physics requirements, survey of theoretical models and performances of detectors employed (or to be employed) in experiments for fundamental physics, astroparticle physics, astrophysics research and space environment OCo including Earth magnetosphere and heliosphere and solar-terrestrial physics. Furthermore, cosmic rays have been used to extend the scientific research experience to teachers and students with air shower arrays and other techniques. Presentations included the following subjects: advances in physics from present and next generation ground and space experiments, dark matter, double beta decay, high-energy astrophysics, space environment, trapped particles, propagation of cosmic rays in the Earth atmosphere, Heliosphere, Galaxy and broader impact activities in cosmic rays science. The open and flexible format of the Conference was conducive to fruitful exchanges of points of view among participants and permitted the evaluation of the progresses made and indicated future research directions. The participants were experienced researchers but also graduate students (MSc and PhD) and recent postdoctoral fellows."
This international conference focussed on several exciting frontier areas of particle physics at energy scales not realizable in terrestrial accelerators and their significance in the fields of astrophysics and cosmology. The topics discussed included physics beyond the standard model, violations of discrete symmetries, neutrino physics, neutrino astronomy, experimental detection of dark matter, gravitation and feebler new forces, cosmic rays, etc. Some of the highlights are the latest results from the Kamiokande neutrino detector and status reports on experimental facilities under commission to detect solar and atmospheric neutrinos, WIMP's and dark matter candidates.
Luis W. Alvarez has had a breathtakingly varied and important career of discovery, adventure, and invention. The winner of the 1968 Nobel Prize in physics for his work on subatomic particles, Alvarez participated as a scientific observer of the Hiroshima bombing mission, formulated the asteroid theory of dinosaur extinctions, discovered the radioactivity of tritium, took x-rays of the Second Pyramid at Giza, designed the Berkeley proton linear accelerator, first observed fundamental particle resonances, created the variable-focus thin lens, analyzed the Kennedy assassination film, and invented the Ground Control Approach radar system for airplane landings, to name but a few of his experiences and accomplishments. Discovering Alvarez collects articles by this innovative physicist, documenting his outstanding contributions. The articles, which span his career, are accompanied by a remarkable collection of commentary by the colleagues and students who worked closely with Alvarez on each project or discovery.
This book presents the progress in cosmic ray physics following the recent results obtained by balloon, satellite and underground experiments. The following topics are reviewed: Composition and propagation of cosmic rays, trapping of charged particles in the earth's magnetic field, atmospheric neutrinos, and high energy photon measurements in space.
Proceedings of IAU Symposium No. 63, held in Cracow, Poland, September 10-12, 1973
The proceedings of this important conference consist of plenary and invited papers published in hard copy and CD-ROM versions. The contributed oral and poster presentations are included in the CD-ROM version only.