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Ballistic Electron Emission Microscopy (beem)

Ballistic Electron Emission Microscopy (beem) PDF Author: Mario Prietsch
Publisher:
ISBN:
Category : Interfaces (Physical sciences)
Languages : en
Pages : 69

Book Description


Ballistic Electron Emission Microscopy (beem)

Ballistic Electron Emission Microscopy (beem) PDF Author: Mario Prietsch
Publisher:
ISBN:
Category : Interfaces (Physical sciences)
Languages : en
Pages : 69

Book Description


Physical Principles of Electron Microscopy

Physical Principles of Electron Microscopy PDF Author: Ray Egerton
Publisher: Springer Science & Business Media
ISBN: 9780387258003
Category : Technology & Engineering
Languages : en
Pages : 224

Book Description
Scanning and stationary-beam electron microscopes are indispensable tools for both research and routine evaluation in materials science, the semiconductor industry, nanotechnology and the biological, forensic, and medical sciences. This book introduces current theory and practice of electron microscopy, primarily for undergraduates who need to understand how the principles of physics apply in an area of technology that has contributed greatly to our understanding of life processes and "inner space." Physical Principles of Electron Microscopy will appeal to technologists who use electron microscopes and to graduate students, university teachers and researchers who need a concise reference on the basic principles of microscopy.

Microscopie à Emission d’Electrons Balistiques (BEEM)

Microscopie à Emission d’Electrons Balistiques (BEEM) PDF Author: Sophie Guézo
Publisher:
ISBN:
Category :
Languages : fr
Pages : 214

Book Description
Ce travail de thèse s’est développé autour de la microscopie à émission d’électrons balistiques (BEEM) sous ultra-vide, dédiée à l’étude des propriétés électroniques d’interfaces d’hétérostructures pertinentes pour des applications potentielles en électronique de spin. Dans un premier temps, l’étude de la jonction Schottky Au/GaAs(001) a permis de mettre en évidence l’influence des propriétés structurales sur le transport d’électrons chauds. Une étude similaire sur Fe/GaAs(001) a confirmé la sensibilité du BEEM aux effets de structures électroniques. Ensuite, l’étude BEEM sur les propriétés électroniques locales de la barrière MgO/GaAs(001) a révélé la présence de canaux de conduction situés dans la bande interdite de MgO. Ces canaux sont associés à la présence de lacunes d’oxygène localisées dans l’oxyde, qui diminuent fortement la hauteur de barrière tunnel. Enfin, des études préliminaires de transport d’électrons chauds dépendants du spin sur Fe/Au/Fe/GaAs(001) sont présentées.

Introduction to Electron Microscopy

Introduction to Electron Microscopy PDF Author: Saul Wischnitzer
Publisher: Elsevier
ISBN: 1483148696
Category : Science
Languages : en
Pages : 311

Book Description
Introduction to Electron Microscopy, Second Edition provides an introduction to the foundations of electron microscopy; an outline of some practical aspects of instrument operation; and discussion of the rationale of the methodology of biological specimen preparation. The book seeks to provide a comprehensive understanding of the theoretical and operational aspects of the electron microscope. This edition consists of two parts. Part One deals with the history, basic theory, and operation of the electron microscope. Part Two discusses steps used in material preparation for electron microscope investigation such as fixation, embedding, and staining techniques. Biomedical researchers, molecular biologists, toxicologists, forensic investigators, and medical students will find this book a very useful reference.

Modeling of Ballistic Electron Emission Microscopy

Modeling of Ballistic Electron Emission Microscopy PDF Author: Yann Claveau
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description
After the discovery of Giant Magneto-Resistance (GMR) by Albert Fert and Peter Grünberg, electronics had a breakthrough with the birth of a new branch called spintronics. This discipline, while still young, exploit the spin of electrons, for instance to store digital information. Most quantum devices exploiting this property of electrons consist of alternating magnetic and nonmagnetic thin layers on a semiconductor substrate. One of the best tools used for characterizing these structures, invented in 1988 by Kaiser and Bell, is the so-called Ballistic Electron Emission Microscope (BEEM). Originally, this microscope, derived from the scanning tunneling microscope (STM), was dedicated to the imaging of buried (nanometer-scale) objects and to the study of the potential barrier (Schottky barrier) formed at the interface of a metal and a semiconductor when placed in contact. With the development of spintronics, the BEEM became an essential spectroscopy technique but still fundamentally misunderstood. It was in 1996 that the first realistic model, based on the non-equilibrium Keldysh formalism, was proposed to describe the transport of electrons during BEEM experiments. In particular, this model allowed to explain some experimental results previously misunderstood. However, despite its success, its use was limited to the study of semi-infinite structures through a calculation method called decimation of Green functions. In this context, we have extended this model to the case of thin films and hetero-structures like spin valves: starting from the same postulate that electrons follow the band structure of materials in which they propagate, we have established an iterative formula allowing calculation of the Green functions of the finite system by tight-binding method. This calculation of Green's functions has been encoded in a FORTRAN 90 program, BEEM v3, in order to calculate the BEEM current and the surface density of states. In parallel, we have developed a simpler method which allows to avoid passing through the non-equilibrium Keldysh formalism. Despite its simplicity, we have shown that this intuitive approach gives some physical interpretation qualitatively similar to the non-equilibrium approach. However, for a more detailed study, the use of “non-equilibrium approach” is inevitable, especially for the detection of thickness effects linked to layer interfaces. We hope these both tools should be useful to experimentalists, especially for the Surfaces and Interfaces team of our department.

Electron Microscopy

Electron Microscopy PDF Author: S. Amelinckx
Publisher: John Wiley & Sons
ISBN: 3527614559
Category : Technology & Engineering
Languages : en
Pages : 527

Book Description
Derived from the successful three-volume Handbook of Microscopy, this book provides a broad survey of the physical fundamentals and principles of all modern techniques of electron microscopy. This reference work on the method most often used for the characterization of surfaces offers a competent comparison of the feasibilities of the latest developments in this field of research. Topics include: * Stationary Beam Methods: Transmission Electron Microscopy/ Electron Energy Loss Spectroscopy/ Convergent Electron Beam Diffraction/ Low Energy Electron Microscopy/ Electron Holographic Methods * Scanning Beam Methods: Scanning Transmission Electron Microscopy/ Scanning Auger and XPS Microscopy/ Scanning Microanalysis/ Imaging Secondary Ion Mass Spectrometry * Magnetic Microscopy: Scanning Electron Microscopy with Polarization Analysis/ Spin Polarized Low Energy Electron Microscopy Materials scientists as well as any surface scientist will find this book an invaluable source of information for the principles of electron microscopy.

Electron Microscopy and Analysis, Third Edition

Electron Microscopy and Analysis, Third Edition PDF Author: Peter J. Goodhew
Publisher: CRC Press
ISBN: 9780748409686
Category : Technology & Engineering
Languages : en
Pages : 274

Book Description
Electron Microscopy and Analysis deals with several sophisticated techniques for magnifying images of very small objects by large amounts - especially in a physical science context. It has been ten years since the last edition of Electron Microscopy and Analysis was published and there have been rapid changes in this field since then. The authors have vastly updated their very successful second edition, which is already established as an essential laboratory manual worldwide, and they have incorporated questions and answers in each chapter for ease of learning. Equally as relevant for material scientists and bioscientists, this third edition is an essential textbook.

The Principles and Practice of Electron Microscopy

The Principles and Practice of Electron Microscopy PDF Author: Ian M. Watt
Publisher: Cambridge University Press
ISBN: 9780521435918
Category : Science
Languages : en
Pages : 506

Book Description
The first edition of this book was widely praised as an excellent introduction to electron microscopy for materials scientists, physicists, earth and biological scientists. This completely revised new edition contains expanded coverage of existing topics and much new material. The author presents the subject of electron microscopy in a readable way, open both to those inexperienced in the technique, and also to practising electron microscopists. The coverage has been brought completely up to date, whilst retaining descriptions of early classic techniques. Currently live topics such as computer control of microscopes, energy-filtered imaging, cryo- and environmental microscopy, digital imaging, and high resolution scanning and transmission microscopy are all described. The highly praised case studies of the first edition have been expanded to include some interesting new examples. This indispensable guide to electron microscopy, written by an author with thirty years practical experience, will be invaluable to new and experienced electron microscopists in any area of science and technology.

Biological Field Emission Scanning Electron Microscopy

Biological Field Emission Scanning Electron Microscopy PDF Author: Roland A. Fleck
Publisher: John Wiley & Sons
ISBN: 1118663241
Category : Science
Languages : en
Pages : 720

Book Description
The go‐to resource for microscopists on biological applications of field emission gun scanning electron microscopy (FEGSEM) The evolution of scanning electron microscopy technologies and capability over the past few years has revolutionized the biological imaging capabilities of the microscope—giving it the capability to examine surface structures of cellular membranes to reveal the organization of individual proteins across a membrane bilayer and the arrangement of cell cytoskeleton at a nm scale. Most notable are their improvements for field emission scanning electron microscopy (FEGSEM), which when combined with cryo-preparation techniques, has provided insight into a wide range of biological questions including the functionality of bacteria and viruses. This full-colour, must-have book for microscopists traces the development of the biological field emission scanning electron microscopy (FEGSEM) and highlights its current value in biological research as well as its future worth. Biological Field Emission Scanning Electron Microscopy highlights the present capability of the technique and informs the wider biological science community of its application in basic biological research. Starting with the theory and history of FEGSEM, the book offers chapters covering: operation (strengths and weakness, sample selection, handling, limitations, and preparation); Commercial developments and principals from the major FEGSEM manufacturers (Thermo Scientific, JEOL, HITACHI, ZEISS, Tescan); technical developments essential to bioFEGSEM; cryobio FEGSEM; cryo-FIB; FEGSEM digital-tomography; array tomography; public health research; mammalian cells and tissues; digital challenges (image collection, storage, and automated data analysis); and more. Examines the creation of the biological field emission gun scanning electron microscopy (FEGSEM) and discusses its benefits to the biological research community and future value Provides insight into the design and development philosophy behind current instrument manufacturers Covers sample handling, applications, and key supporting techniques Focuses on the biological applications of field emission gun scanning electron microscopy (FEGSEM), covering both plant and animal research Presented in full colour An important part of the Wiley-Royal Microscopical Series, Biological Field Emission Scanning Electron Microscopy is an ideal general resource for experienced academic and industrial users of electron microscopy—specifically, those with a need to understand the application, limitations, and strengths of FEGSEM.

Light and Electron Microscopy

Light and Electron Microscopy PDF Author: Elizabeth M. Slayter
Publisher: Cambridge University Press
ISBN: 9780521339483
Category : Science
Languages : en
Pages : 336

Book Description
The compound optical microscope, in its various modern forms, is probably the most familiar of all laboratory instruments and the electron microscope, once an exotic rarity, has now become a standard tool in biological and materials research. Both instruments are often used effectively with little knowledge of the relevant theory, or even of how a particular type of microscope functions. Eventually however, proper use, interpretation of images and choices of specific applications demand an understanding of fundamental principles. This book describes the principles of operation of each type of microscope currently available and of use to biomedical and materials scientists. It explains the mechanisms of image formation, contrast and its enhancement, accounts for ultimate limits on the size of observable details (resolving power and resolution) and finally provides an account of Fourier optical theory. Principles behind the photographic methods used in microscopy are also described and there is some discussion of image processing methods. The book will appeal to graduate students and researchers in the biomedical sciences, and it will be helpful to students taking a course involving the principles of microscopy.