Surface Microscopy with Low Energy Electrons

ยท Springer
เด‡-เดฌเตเด•เตเด•เต
496
เดชเต‡เดœเตเด•เตพ
เดฑเต‡เดฑเตเดฑเดฟเด‚เด—เตเด•เดณเตเด‚ เดฑเดฟเดตเตเดฏเต‚เด•เดณเตเด‚ เดชเดฐเดฟเดถเต‹เดงเดฟเดšเตเดšเตเดฑเดชเตเดชเดฟเดšเตเดšเดคเดฒเตเดฒ ย เด•เต‚เดŸเตเดคเดฒเดฑเดฟเดฏเตเด•

เดˆ เด‡-เดฌเตเด•เตเด•เดฟเดจเต†เด•เตเด•เตเดฑเดฟเดšเตเดšเต

This book, written by a pioneer in surface physics and thin film research and the inventor of Low Energy Electron Microscopy (LEEM), Spin-Polarized Low Energy Electron Microscopy (SPLEEM) and Spectroscopic Photo Emission and Low Energy Electron Microscopy (SPELEEM), covers these and other techniques for the imaging of surfaces with low energy (slow) electrons. These techniques also include Photoemission Electron Microscopy (PEEM), X-ray Photoemission Electron Microscopy (XPEEM), and their combination with microdiffraction and microspectroscopy, all of which use cathode lenses and slow electrons. Of particular interest are the fundamentals and applications of LEEM, PEEM, and XPEEM because of their widespread use. Numerous illustrations illuminate the fundamental aspects of the electron optics, the experimental setup, and particularly the application results with these instruments. Surface Microscopy with Low Energy Electrons will give the reader a unified picture of the imaging, diffraction, and spectroscopy methods that are possible using low energy electron microscopes.

เดฐเดšเดฏเดฟเดคเดพเดตเดฟเดจเต† เด•เตเดฑเดฟเดšเตเดšเต

Professor Ernst Bauer is a distinguished German-American physicist and surface scientist who has made fundamental contributions to the understanding of epitaxial growth and to the development of microscopy techniques. He is one of the founders of surface physics and the physics of thin films.

In 1958 he derived the classification of the thin film growth mechanisms that provides the theoretical framework of epitaxy which is used worldwide to this day. In 1962 he invented LEEM (Low Energy Electron Microscopy), which came to fruition in 1985. In the late eighties/early nineties he extended the LEEM technique in two important directions by developing Spin-Polarized Low Energy Electron Microscopy (SPLEEM) and Spectroscopic Photo Emission and Low Energy Electron Microscopy (SPELEEM). The combination of these methods now allows a comprehensive (structural, chemical, magnetic and electronic) characterization of surfaces and thin films on the 10 nm scale.

Ernst Bauerโ€™s interest in the development of synchrotron radiation microscopy techniques and his involvement with the Synchrotron source Elettra in Trieste, Italy resulted in the development of the Nanospectroscopy beamline, which is today one of the leading synchrotron radiation microscopy facilities worldwide.

His work directly or indirectly impacts many areas of modern materials science: surfaces, thin films, electronic materials and instrumentation. The invention and development of surface microscopy with slo

w electrons has revolutionized the study of surface science and thin film science.

Ernst Bauer has authored or co-authored more than 450 publications (among them 85 review papers and book chapters) and one book ("Electron Diffraction: Theory, Practice and Applications", 1958, in German). His papers are widely cited.

Numerous LEEM instruments are now installed and are operating in many laboratories and synchrotron radiation facilities around the world (USA, Europe, Asia and Australia). An important recognition for Ernst Bauerโ€™s efforts in the field of surface microscopy is the increasing number of the scientists involved in LEEM research, which is reflected in the organization of bi-annual LEEM/PEEM workshops, the first of which was organized by Ernst Bauer and Anastassia Pavlovska in Arizona in 1998.

Broad international collaboration is typical of Ernst Bauerโ€™s research. He had longstanding scientific cooperations with NASA, University of Pretoria (South Africa), Synchrotron Radiation Source in Trieste (Italy), Poland, Ukraine, Bulgaria and Czech Republic. About 80 visiting scientists had a possibility to perform high quality research in his group in Germany. Presently he has collaborations with Japan, Poland, Italy, Germany and Hong Kong.

The scientific achievements of Ernst Bauer have been multiply honored. He was the recipient of the E.W. Muller Award in 1985, the Gaede Prize of the German Vacuum Society in 1988, the Medard W. Welch Award of the Ame

rican Vacuum Society in 1992, the Niedersachsenpreis for Science (Germany) in 1994, the BESSY Innovation Award on Synchrotron Radiation in 2004 and the very prestigious Davisson-Germer Prize of the American Physical Society in 2005. In 2003 Ernst Bauer received the first Award of the Japan Society of Promotion of Science's 141st Committee on Microbeam Analysis and was made an honorary member of this organization. He was elected a Member of the Goettingen Academy of Sciences in 1989, Fellow of the American Physical Society in 1991 and Fellow of the American Vacuum Society in 1994. In 2008 he was honored with a Humboldt Research Prize and Doctor Honoris Causa at the Marie Sklodovska-Curie University, Lublin, Poland. In 2012 he was appointed Fellow of Elettra Sincrotrone Trieste and in 2014 he received the Doctor Honoris Causa title from the University of Wrocล‚aw, Poland.

More information can be found:

  • on Ernst Bauerโ€™s website at Arizona State University
  • on Wikipedia: Ernst. G. Bauer

เดˆ เด‡-เดฌเตเด•เตเด•เต เดฑเต‡เดฑเตเดฑเต เดšเต†เดฏเตเดฏเตเด•

เดจเดฟเด™เตเด™เดณเตเดŸเต† เด…เดญเดฟเดชเตเดฐเดพเดฏเด‚ เดžเด™เตเด™เดณเต† เด…เดฑเดฟเดฏเดฟเด•เตเด•เตเด•.

เดตเดพเดฏเดจเดพ เดตเดฟเดตเดฐเด™เตเด™เตพ

เดธเตโ€ŒเดฎเดพเตผเดŸเตเดŸเตเดซเต‹เดฃเตเด•เดณเตเด‚ เดŸเดพเดฌเตโ€Œเดฒเต†เดฑเตเดฑเตเด•เดณเตเด‚
Android, iPad/iPhone เดŽเดจเตเดจเดฟเดตเดฏเตเด•เตเด•เดพเดฏเดฟ Google Play เดฌเตเด•เตโ€Œเดธเต เด†เดชเตเดชเต เด‡เตปเดธเตโ€Œเดฑเตเดฑเดพเตพ เดšเต†เดฏเตเดฏเตเด•. เด‡เดคเต เดจเดฟเด™เตเด™เดณเตเดŸเต† เด…เด•เตเด•เต—เดฃเตเดŸเตเดฎเดพเดฏเดฟ เดธเตเดตเดฏเดฎเต‡เดต เดธเดฎเดจเตเดตเดฏเดฟเดชเตเดชเดฟเด•เตเด•เดชเตเดชเต†เดŸเตเด•เดฏเตเด‚, เดŽเดตเดฟเดŸเต† เด†เดฏเดฟเดฐเตเดจเตเดจเดพเดฒเตเด‚ เด“เตบเดฒเตˆเดจเดฟเตฝ เด…เดฒเตเดฒเต†เด™เตเด•เดฟเตฝ เด“เดซเตโ€Œเดฒเตˆเดจเดฟเตฝ เดตเดพเดฏเดฟเด•เตเด•เดพเตป เดจเดฟเด™เตเด™เดณเต† เด…เดจเตเดตเดฆเดฟเด•เตเด•เตเด•เดฏเตเด‚ เดšเต†เดฏเตเดฏเตเดจเตเดจเต.
เดฒเดพเดชเตเดŸเต‹เดชเตเดชเตเด•เดณเตเด‚ เด•เดฎเตเดชเตเดฏเต‚เดŸเตเดŸเดฑเตเด•เดณเตเด‚
Google Play-เดฏเดฟเตฝ เดจเดฟเดจเตเดจเต เดตเดพเด™เตเด™เดฟเดฏเดฟเดŸเตเดŸเตเดณเตเดณ เด“เดกเดฟเดฏเต‹ เดฌเตเด•เตเด•เตเด•เตพ เด•เดฎเตเดชเตเดฏเต‚เดŸเตเดŸเดฑเดฟเดจเตโ€เดฑเต† เดตเต†เดฌเต เดฌเตเดฐเต—เดธเตผ เด‰เดชเดฏเต‹เด—เดฟเดšเตเดšเตเด•เตŠเดฃเตเดŸเต เดตเดพเดฏเดฟเด•เตเด•เดพเดตเตเดจเตเดจเดคเดพเดฃเต.
เด‡-เดฑเต€เดกเดฑเตเด•เดณเตเด‚ เดฎเดฑเตเดฑเต เด‰เดชเด•เดฐเดฃเด™เตเด™เดณเตเด‚
Kobo เด‡-เดฑเต€เดกเดฑเตเด•เตพ เดชเต‹เดฒเตเดณเตเดณ เด‡-เด‡เด™เตเด•เต เด‰เดชเด•เดฐเดฃเด™เตเด™เดณเดฟเตฝ เดตเดพเดฏเดฟเด•เตเด•เดพเตป เด’เดฐเต เดซเดฏเตฝ เดกเต—เตบเดฒเต‹เดกเต เดšเต†เดฏเตเดคเต เด…เดคเต เดจเดฟเด™เตเด™เดณเตเดŸเต† เด‰เดชเด•เดฐเดฃเดคเตเดคเดฟเดฒเต‡เด•เตเด•เต เด•เตˆเดฎเดพเดฑเต‡เดฃเตเดŸเดคเตเดฃเตเดŸเต. เดชเดฟเดจเตเดคเตเดฃเดฏเตเดณเตเดณ เด‡-เดฑเต€เดกเดฑเตเด•เดณเดฟเดฒเต‡เด•เตเด•เต เดซเดฏเดฒเตเด•เตพ เด•เตˆเดฎเดพเดฑเดพเตป, เดธเดนเดพเดฏ เด•เต‡เดจเตเดฆเตเดฐเดคเตเดคเดฟเดฒเตเดณเตเดณ เดตเดฟเดถเดฆเดฎเดพเดฏ เดจเดฟเตผเดฆเตเดฆเต‡เดถเด™เตเด™เตพ เดซเต‹เดณเต‹ เดšเต†เดฏเตเดฏเตเด•.

Ernst Bauer เดŽเดจเตเดจ เดฐเดšเดฏเดฟเดคเดพเดตเดฟเดจเตเดฑเต† เด•เต‚เดŸเตเดคเตฝ เดชเตเดธเตโ€Œเดคเด•เด™เตเด™เตพ

เดธเดฎเดพเดจเดฎเดพเดฏ เด‡-เดฌเตเด•เตเด•เตเด•เตพ