Plasmon Coupling Physics Advances in Imaging and Electron Physics Series
Coordonnateurs : Hÿtch Martin, Hawkes Peter W.
Plasmon Coupling Physics, Wave Effects and their Study by Electron Spectroscopies, Volume 222 in the Advances in Imaging and Electron Physics serial, merges two long-running serials, Advances in Electronics and Electron Physics and Advances in Optical and Electron Microscopy. The series features articles on the physics of electron devices (especially semiconductor devices), particle optics at high and low energies, microlithography, image science, digital image processing, electromagnetic wave propagation, electron microscopy and the computing methods used in all these domains.
Specific chapters in this release cover Phase retrieval methods applied to coherent imaging, X-ray phase-contrast imaging: a broad overview of some fundamentals, Graphene and borophene as nanoscopic materials for electronics ? with review of the physics, and more.
Preface Martin Hÿtch and Peter W. Hawkes 1. A brief introduction to nano-optics with fast electrons Hugo Lourenço-Martins 2. A unified description of inelastic scattering of relativistic electron beams and its application to holography Hugo Lourenço-Martins 3. Development of phase-shaped electron energy-loss spectroscopy for nano-optics Hugo Lourenço-Martins 4. Exploring nano-optical excitations coupling with fast electrons techniques Hugo Lourenço-Martins
Peter Hawkes obtained his M.A. and Ph.D (and later, Sc.D.) from the University of Cambridge, where he subsequently held Fellowships of Peterhouse and of Churchill College. From 1959 – 1975, he worked in the electron microscope section of the Cavendish Laboratory in Cambridge, after which he joined the CNRS Laboratory of Electron Optics in Toulouse, of which he was Director in 1987. He was Founder-President of the European Microscopy Society and is a Fellow of the Microscopy and Optical Societies of America. He is a member of the editorial boards of several microscopy journals and serial editor of Advances in Electron Optics.
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Date de parution : 06-2022
Ouvrage de 312 p.
15.2x22.8 cm