Introduction to Scanning Tunneling Microscopy (Monographs on the Physics and Chemistry of Materials)

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9780199211500: Introduction to Scanning Tunneling Microscopy (Monographs on the Physics and Chemistry of Materials)

The scanning tunneling microscope and the atomic force microscope, both capable of imaging and manipulating individual atoms, were crowned with the Nobel Prize in Physics in 1986, and are the cornerstones of nanotechnology today. The first edition of this book has nurtured numerous beginners and experts since 1993. The second edition is a thoroughly updated version of this 'bible' in the field.

The second edition includes a number of new developments in the field. Non-contact atomic-force microscopy has demonstrated true atomic resolution. It enables direct observation and mapping of individual chemical bonds. A new chapter about the underlying physics, atomic forces, is added. The chapter on atomic force microscopy is substantially expanded. Spin-polarized STM has enabled the observation of local magnetic phenomena down to atomic scale. A pedagogical presentation of the basic concepts is included. Inelastic scanning tunneling microscopy has shown the capability of studying vibrational modes of individual molecules. The underlying theory and new instrumentation are added. For biological research, to increase the speed of scanning to observe life phenomena in real time is a key. Advances in this direction are presented as well. The capability of STM to manipulate individual atoms is one of the cornerstones of nanotechnology. The theoretical basis and in particular the relation between tunneling and interaction energy are thoroughly presented, together with experimental facts.

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About the Author:


C. Julian Chen, Department of Applied Physics and Applied Mathematics, Columbia University, New York

C. Julian Chen, Department of Applied Physics and Applied Mathematics, Columbia University, New York, USA.

Please visit the author's homepage for more information. [add URL as in the HB webpage: http://www.columbia.edu/~jcc2161/]

Review:

`Review from previous edition An excellent book which will benefit students and scientists alike.' Tien T. Tsong, Pennsylvania State University

`A remarkable achievement, a beautiful piece of work.' Andrew Briggs, University of Oxford

`Provides a good introduction to the field for newcomers, and also contains valuable material and hints for experts.' Heinrich Rohrer, IBM

`The great value of the Chen book is that it attempts pedagogical soundness, and so is useful for teaching.' John Spence, Arizona State University

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C. Julian Chen
Editorial: Oxford University Press, United Kingdom (2007)
ISBN 10: 0199211507 ISBN 13: 9780199211500
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Descripción Oxford University Press, United Kingdom, 2007. Hardback. Estado de conservación: New. 2nd Revised edition. Language: English . Brand New Book. The scanning tunneling microscope and the atomic force microscope, both capable of imaging and manipulating individual atoms, were crowned with the Nobel Prize in Physics in 1986, and are the cornerstones of nanotechnology today. The first edition of this book has nurtured numerous beginners and experts since 1993. The second edition is a thoroughly updated version of this bible in the field. The second edition includes a number of new developments in the field. Non-contact atomic-force microscopy has demonstrated true atomic resolution. It enables direct observation and mapping of individual chemical bonds. A new chapter about the underlying physics, atomic forces, is added. The chapter on atomic force microscopy is substantially expanded. Spin-polarized STM has enabled the observation of local magnetic phenomena down to atomic scale. A pedagogical presentation of the basic concepts is included. Inelastic scanning tunneling microscopy has shown the capability of studying vibrational modes of individual molecules. The underlying theory and new instrumentation are added. For biological research, to increase the speed of scanning to observe life phenomena in real time is a key. Advanced in this direction is presented as well. The capability of STM to manipulate individual atoms is one of the cornerstones of nanotechnology. The theoretical basis and in particular the relation between tunneling and interaction energy are thoroughly presented, together with experimental facts. Nº de ref. de la librería AOP9780199211500

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Descripción OUP Oxford 2007-09-13, 2007. Estado de conservación: New. Brand new book, sourced directly from publisher. Dispatch time is 24-48 hours from our warehouse. Book will be sent in robust, secure packaging to ensure it reaches you securely. Nº de ref. de la librería NU-OUP-00088871

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Descripción OUP Oxford 2007-09-13, Oxford, 2007. hardback. Estado de conservación: New. Nº de ref. de la librería 9780199211500

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Descripción Oxford University Press, United Kingdom, 2007. Hardback. Estado de conservación: New. 2nd Revised edition. Language: English . Brand New Book. The scanning tunneling microscope and the atomic force microscope, both capable of imaging and manipulating individual atoms, were crowned with the Nobel Prize in Physics in 1986, and are the cornerstones of nanotechnology today. The first edition of this book has nurtured numerous beginners and experts since 1993. The second edition is a thoroughly updated version of this bible in the field. The second edition includes a number of new developments in the field. Non-contact atomic-force microscopy has demonstrated true atomic resolution. It enables direct observation and mapping of individual chemical bonds. A new chapter about the underlying physics, atomic forces, is added. The chapter on atomic force microscopy is substantially expanded. Spin-polarized STM has enabled the observation of local magnetic phenomena down to atomic scale. A pedagogical presentation of the basic concepts is included. Inelastic scanning tunneling microscopy has shown the capability of studying vibrational modes of individual molecules. The underlying theory and new instrumentation are added. For biological research, to increase the speed of scanning to observe life phenomena in real time is a key. Advanced in this direction is presented as well. The capability of STM to manipulate individual atoms is one of the cornerstones of nanotechnology. The theoretical basis and in particular the relation between tunneling and interaction energy are thoroughly presented, together with experimental facts. Nº de ref. de la librería AOP9780199211500

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Descripción 2007. HRD. Estado de conservación: New. New Book. Shipped from US within 10 to 14 business days. Established seller since 2000. Nº de ref. de la librería VU-9780199211500

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Descripción Oxford Univ Pr, 2007. Hardcover. Estado de conservación: Brand New. 2nd edition. 432 pages. 9.50x6.25x1.00 inches. In Stock. Nº de ref. de la librería __0199211507

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Descripción Oxford University Press, USA, 2007. Hardcover. Estado de conservación: New. 2. Nº de ref. de la librería DADAX0199211507

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Descripción Oxford University Press, 2007. Hardcover. Estado de conservación: New. book. Nº de ref. de la librería M0199211507

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Descripción Oxford University Press, United Kingdom, 2007. Hardback. Estado de conservación: New. 2nd Revised edition. Language: English . This book usually ship within 10-15 business days and we will endeavor to dispatch orders quicker than this where possible. Brand New Book. The scanning tunneling microscope and the atomic force microscope, both capable of imaging and manipulating individual atoms, were crowned with the Nobel Prize in Physics in 1986, and are the cornerstones of nanotechnology today. The first edition of this book has nurtured numerous beginners and experts since 1993. The second edition is a thoroughly updated version of this bible in the field. The second edition includes a number of new developments in the field. Non-contact atomic-force microscopy has demonstrated true atomic resolution. It enables direct observation and mapping of individual chemical bonds. A new chapter about the underlying physics, atomic forces, is added. The chapter on atomic force microscopy is substantially expanded. Spin-polarized STM has enabled the observation of local magnetic phenomena down to atomic scale. A pedagogical presentation of the basic concepts is included. Inelastic scanning tunneling microscopy has shown the capability of studying vibrational modes of individual molecules. The underlying theory and new instrumentation are added. For biological research, to increase the speed of scanning to observe life phenomena in real time is a key. Advanced in this direction is presented as well. The capability of STM to manipulate individual atoms is one of the cornerstones of nanotechnology. The theoretical basis and in particular the relation between tunneling and interaction energy are thoroughly presented, together with experimental facts. Nº de ref. de la librería BTE9780199211500

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Descripción Oxford University Press, 2007. Hardcover. Estado de conservación: New. Never used!. Nº de ref. de la librería P110199211507

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