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E-BooksScattering of Photons by Many–Electron Systems (2024)



Scattering of Photons by Many–Electron Systems (2024)
Free Download Scattering of Photons by Many-Electron Systems by Alexey N. Hopersky , Victor A. Yavna
English | PDF | 2010 | 145 Pages | ISBN : 3642042554 | 4.4 MB
This book deals with quantum physical calculations of anomalous scattering of photons by bound electrons. The main attention is paid to studies of the process of photon scattering in the energy range of deep levels of such many-electron systems as atoms, atomic ions and simple molecules. The book is written for scientists and graduate students, working in the field of atomic and molecular spectroscopy, physics of plasmas, lasers, solid state, ionizing radiation and astrophysics. It can also be used as additional textbook for a special topic of quantum mechanics.



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E-BooksLaser Wakefield Electron Acceleration A Novel Approach Employing Supersonic Microjets and Few–Cycle Laser Pulses (2024)



Laser Wakefield Electron Acceleration A Novel Approach Employing Supersonic Microjets and Few–Cycle Laser Pulses (2024)
Free Download Laser Wakefield Electron Acceleration: A Novel Approach Employing Supersonic Microjets and Few-Cycle Laser Pulses by Karl Schmid
English | PDF (True) | 2011 | 169 Pages | ISBN : 3642199496 | 6.2 MB
This thesis covers the few-cycle laser-driven acceleration of electrons in a laser-generated plasma. This process, known as laser wakefield acceleration (LWFA), relies on strongly driven plasma waves for the generation of accelerating gradients in the vicinity of several 100 GV/m, a value four orders of magnitude larger than that attainable by conventional accelerators. This thesis demonstrates that laser pulses with an ultrashort duration of 8 fs and a peak power of 6 TW allow the production of electron energies up to 50 MeV via LWFA. The special properties of laser accelerated electron pulses, namely the ultrashort pulse duration, the high brilliance, and the high charge density, open up new possibilities in many applications of these electron beams.



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E-BooksFundamentals of Inelastic Electron Scattering



Fundamentals of Inelastic Electron Scattering
Free Download Fundamentals of Inelastic Electron Scattering by Peter Schattschneider
English | PDF | 1986 | 205 Pages | ISBN : 3211819371 | 14.2 MB
Electron energy loss spectroscopy (ELS) is a vast subject with a long and honorable history. The problem of stopping power for high energy particles interested the earliest pioneers of quantum mechanics such as Bohr and Bethe, who laid the theoretical foun dations of the subject. The experimental origins might perhaps be traced to the original Franck-Hertz experiment. The modern field includes topics as diverse as low energy reflection electron energy loss studies of surface vibrational modes, the spectroscopy of gases and the modern theory of plasmon excitation in crystals. For the study of ELS in electron microscopy, several historically distinct areas of physics are relevant, including the theory of the Debye Waller factor for virtual inelastic scattering, the use of complex optical potentials, lattice dynamics for crystalline specimens and the theory of atomic ionisation for isolated atoms. However the field of electron energy loss spectroscopy contains few useful texts which can be recommended for students. With the recent appearance of Raether's and Egerton's hooks (see text for references), we have for the first time both a comprehensive review text-due to Raether-and a lucid introductory text which emphasizes experimental aspects-due to Egerton. Raether's text tends to emphasize the recent work on surface plasmons, while the strength of Egerton's book is its treatment of inner shell excitations for microanalysis, based on the use of atomic wavefunctions for crystal electrons.



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E-BooksElectron Microscopy of Nanotubes



Electron Microscopy of Nanotubes
Free Download Electron Microscopy of Nanotubes by Zhong Lin Wang, Chun Hui
English | PDF | 2003 | 316 Pages | ISBN : 1402073615 | 33.9 MB
Research in carbon nanotubes has reached a horizon that is impacting a variety of fields, such as nanoelectronics, flat panel display, composite materials, sensors, nanodevices, and novel instrumentation. The unique structures of the nanotubes result in numerous superior physical and chemical properties, such as the strongest mechan ical strength, the highest thermal conductivity, room-temperature ballistic quantum conductance, electromechanical coupling, and super surface functionality. Several books are available that introduce the synthesis, physical and chemical properties, and applications of carbon nanotubes. Among the various analytical techniques, high-resolution transmission electron microscopy (HRTEM) has played a key role in the discovery and characterization of carbon nanotubes. It may be claimed that carbon nanotubes might not have been discovered without using HRTEM. There is a great need for a book that addresses the theory, techniques, and applications of electron microscopy and associated techniques for nanotube research. The objective of this book is to fill this gap. The potential of HRTEM is now well accepted in wide-ranging communities such as materials science, physics, chemistry, and electrical engineering. TEM is a powerful technique that is indispensable for characterizing nanomaterials and is a tool that each major research institute must have in order to advance its research in nanotechnology.



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E-BooksAdvanced Techniques in Biological Electron Microscopy III



Advanced Techniques in Biological Electron Microscopy III
Free Download Advanced Techniques in Biological Electron Microscopy III by James K. Koehler
English | PDF | 1986 | 289 Pages | ISBN : 3540164006 | 28.6 MB
This volume is a continuation of two prior books on advanced electron microscope techniques. The purpose of this series has been to provide in depth analyses of methods which are considered to be at the leading edge of electron microscopic research procedures with applications in the biological sciences. The mission of the present volume remains that of a source book for the research practitioner or advanced student, especially one already well versed in basic electron optical methods. It is not meant to provide in troductory material, nor can this modest volume hope to cover the entire spectrum of advanced technology now available in electron microscopy. In the past decade, computers have found their way into many research laboratories thanks to the enormous increase in computing power and stor age available at a modest cost. The ultrastructural area has also benefited from this expansion in a number of ways which will be illustrated in this volume. Half of the contributions discuss technologies that either directly or indirectly make extensive use of computer methods.



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E-BooksWang Z Electron Microscopy of Nanotubes 2003




Wang Z  Electron Microscopy of Nanotubes 2003

Wang Z Electron Microscopy of Nanotubes 2003 | 94.48 MB
N/A | 316 Pages

Title: N/A
Author: N/A
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E-BooksElectron Cyclotron Resonance Ion Sources and ECR Plasmas



Electron Cyclotron Resonance Ion Sources and ECR Plasmas
Free Download Electron Cyclotron Resonance Ion Sources and ECR Plasmas By Geller, R
2018 | 449 Pages | ISBN: 0750301074 | PDF | 20 MB
Acknowledged as the "founding father" of and world renowned expert on electron cyclotron resonance sources Richard Geller has produced a unique book devoted to the physics and technicalities of electron cyclotron resonance sources.



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E-BooksBolonkin A Wind Energy Electron Jet Generators and Propulsions 2017




Bolonkin A  Wind Energy  Electron Jet Generators and Propulsions 2017

Bolonkin A Wind Energy Electron Jet Generators and Propulsions 2017 | 13.26 MB
N/A | 142 Pages

Title: Неизвестное название
Author: Alexander
Year: N/A




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E-BooksX–Ray Free–Electron Laser (2024)



X–Ray Free–Electron Laser (2024)
Free Download X-Ray Free-Electron Laser by Kiyoshi Ueda
English | PDF | 2018 | 458 Pages | ISBN : 3038428795 | 231.09 MB
X-ray free electron lasers (XFELs) deliver intense, coherent, femtosecond laser pulses in the X-ray range. The XFELs are opening two new research fields. One is to study ultrafast electronic and structural dynamics in various forms of matter. XFELs can make atoms and electrons in action visible. Another field is to study the non-linear interaction of the unprecedented intense X-ray pulse with matter.



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E-BooksSteding's and Virágh's Scanning Electron Microscopy Atlas of the Developing Human Heart



Steding's and Virágh's Scanning Electron Microscopy Atlas of the Developing Human Heart
Free Download Steding's and Virágh's Scanning Electron Microscopy Atlas of the Developing Human Heart by Roelof-Jan Oostra , Gerd Steding , Wout H. Lamers , Antoon F. M. Moorman
English | PDF (True) | 2007 | 218 Pages | ISBN : 0387369422 | 17.3 MB
Steding's and Virágh's Scanning Electron Microscopy Atlas of the Developing Human Heart comprises a complete and extensive exposure of the spatial and temporal aspects of human cardiac development as seen with scanning electron microscopy. Apart from serving as a unique overview on cardiac development in the human embryo, this atlas gives an updated morphological reference of cardiac embryology for topographic correlation and enables the projection of experimental results in animals to the human situation.



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