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The exploration of the subnuclear world is done through increasingly complex experiments covering a wide range of energy and performed in a large variety of environments ranging from particle accelerators, underground detectors to satellites and the space laboratory. Among recent advances one has to indicate, for instance, first results obtained from space and LHC experiments and progress done in preparation of the latter experiments upgrades, including plans for the LHC machine upgrade. The achievement of these research programs calls for novel techniques, new materials and instrumentation to be used in detectors, often of large scale. Therefore, fundamental physics is at the forefront of t...
The exploration of the subnuclear world is done through increasingly complex experiments covering a wide range of energy and performed in a large variety of environments ranging from particle accelerators, underground detectors to satellites and the space laboratory. Among recent advances one has to indicate, for instance, first results obtained from space and LHC experiments and progress done in preparation of the latter experiments upgrades, including plans for the LHC machine upgrade. The achievement of these research programs calls for novel techniques, new materials and instrumentation to be used in detectors, often of large scale. Therefore, fundamental physics is at the forefront of technological advance and also leads to many applications. Among these, medical applications have a particular importance due to health and social benefits they bring to the public.
Carbon nanotubes (CNTs), discovered in 1991, have been a subject of intensive research for a wide range of applications. In the past decades, although carbon nanotubes have undergone massive research, considering the success of silicon, it has, nonetheless, been difficult to appreciate the potential influence of carbon nanotubes in current technology. The main objective of this book is therefore to give a wide variety of possible applications of carbon nanotubes in many industries related to electron device technology. This should allow the user to better appreciate the potential of these innovating nanometer sized materials. Readers of this book should have a good background on electron devices and semiconductor device physics as this book presents excellent results on possible device applications of carbon nanotubes. This book begins with an analysis on fabrication techniques, followed by a study on current models, and it presents a significant amount of work on different devices and applications available to current technology.
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This is a collection of review articles and more specialized papers on the main issues of early universe physics. Both theoretical and experimental fields of research are dealt with. Contents: Direct Search for Wimps (R Bernabei et al.); Ultra High Energy Cosmic Rays (P Blasi); Structure and Evolution of Cluster Galaxies (G Busarello et al.); Status of Ligo Interferometers (E D'Ambrosio); The Cosmic Renaissance: Reionization Era as the New Cosmological Frontier (S G Djorgovski); High-Energy Neutrino Astronomy (F Halzen); Microlensing Towards the LMC (P Jetzer); Present and Future Neutrino Oscillation Experiments (T Kajita); Axion Dark Matter (E Mass); Dark Matter and Supersymmetry (S Scopel); Curvature Quintessence (S Capozziello et al.); Van Der Waals Quintessence (S Capozziello et al.); Effects of BBN on Population III Stars (F Iocco); An Updated Nuclear Reaction Network for BBN (P D Serpico); Active Star-Forming Galaxies in Pairs in the 2DF (G Sorrentino et al.); and other papers. Readership: Particle physicists interested in the early universe, as well as astrophysicists and cosmologists.
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All papers in these proceedings are in English. IFAE is an annual conference on high energy physics. Distinguished scientists discuss relevant topics of particle physics, cosmic ray and neutrino physics, as well as detector and accelerator technologies. Topics included are: the standard model, SUSY and beyond the standard model, heavy flavor physics, neutrinos and cosmic rays, as well as detectors and new technologies.