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Titlebook: Advances in Scanning Probe Microscopy; Toshio Sakurai,Yousuke Watanabe Book 2000 Springer-Verlag Berlin Heidelberg 2000 AFM.Adsorption.Exp

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期刊全称Advances in Scanning Probe Microscopy
影响因子2023Toshio Sakurai,Yousuke Watanabe
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发行地址Provides introduction to selected theoretical and experimental aspects of particular current interest in this rapidly developing field.Of interest to newcomers and established workers alike
学科分类Advances in Materials Research
图书封面Titlebook: Advances in Scanning Probe Microscopy;  Toshio Sakurai,Yousuke Watanabe Book 2000 Springer-Verlag Berlin Heidelberg 2000 AFM.Adsorption.Exp
影响因子There have been many books published on scanning tunneling microscopy (STM), atomic force microscopy (AFM) and related subjects since Dr. Cerd Binnig and Dr. Heinrich Rohrer invented STM in 1982 and AFM in 1986 at IBM Research Center in Zurich, Switzerland. These two techniques, STM and AFM, now form the core of what has come to be called the ‘scanning probe microscopy (SPM)‘ family. SPM is not just the most powerful microscope for scientists to image atoms on surfaces, but is also becoming an indispensable tool for manipulating atoms and molecules to construct man-made materials and devices. Its impact has been felt in various fields, from surface physics and chemistry to nano-mechanics, nano-electronics and medical science. Its influence will surely extend further as the years go by, beyond the reach of our present imagination, and new research applications will continue to emerge. This book, therefore, is not intended to be a comprehensive review or textbook on SPM. Its aim is to cover only a selected part of the active re­ search fields of SPM and related topics in which I have been directly involved over the years. These include the basic principles of STM and AFM, and their a
Pindex Book 2000
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Panoramic Spherical Video — The Space Ballrincipal reconstructions found on the (001) surface of III–V compound semiconductors, made during the first decade following the invention of Scanning Tunneling Microscopy in the early 1980s. We consider arsenides, such as GaAs, InAs and AlAs, phosphides, such as GaP and InP, antimonides, such as Ga
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Toshio Sakurai,Yousuke WatanabeProvides introduction to selected theoretical and experimental aspects of particular current interest in this rapidly developing field.Of interest to newcomers and established workers alike
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