Introduction To Scanning Tunneling Microscopy

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Introduction to Scanning Tunneling Microscopy

Author: C. Julian Chen
language: en
Publisher: Oxford University Press
Release Date: 1993-05-20
Due to its nondestructive imaging power, scanning tunneling microscopy has found major applications in the fields of physics, chemistry, engineering, and materials science. This book provides a comprehensive treatment of scanning tunneling and atomic force microscopy, with full coverage of the imaging mechanism, instrumentation, and sample applications. The work is the first single-author reference on STM and presents much valuable information previously available only as proceedings or collections of review articles. It contains a 32-page section of remarkable STM images, and is organized as a self-contained work, with all mathematical derivations fully detailed. As a source of background material and current data, the book will be an invaluable resource for all scientists, engineers, and technicians using the imaging abilities of STM and AFM. It may also be used as a textbook in senior-year and graduate level STM courses, and as a supplementary text in surface science, solid-state physics, materials science, microscopy, and quantum mechanics.
Introduction to Scanning Tunneling Microscopy Third Edition

This third edition is a thoroughly updated and improved version of the recognized "Bible" of the field.
Scanning Probe Microscopy

Author: Ernst Meyer
language: en
Publisher: Springer Science & Business Media
Release Date: 2013-03-14
Two decades after its invention, scanning probe microscopy has become a widely used method in laboratories as diverse as industrial magnetic stor age development or structural biology. Consequently, the community of users ranges from biologists and medical researchers to physicists and engineers, all of them exploiting the unrivalled resolution and profiting from the relative simplicity of the experimental implementation. In recent years the authors have taught numerous courses on scanning probe microscopy, normally in combination with hands-on student experi ments. The audiences ranged from physics freshmen to biology post-docs and even high-school teachers. We found it of particular importance to cover not only the physical principles behind scanning probe microscopy but also ques tions of instrumental designs, basic features of the different imaging modes, and recurring artifacts. With this book our intention is to provide a gen eral textbook for all types of classes that address scanning probe microscopy. Third year undergraduates and beyond should be able to use it for self-study or as textbook to accompany a course on probe microscopy. Furthermore, it will be valuable as reference book in any scanning probe microscopy labora tory.