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Titlebook: Introduction to Electron Holography; Edgar Völkl,Lawrence F. Allard,David C. Joy Book 1999 Springer Science+Business Media New York 1999 c

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书目名称Introduction to Electron Holography
编辑Edgar Völkl,Lawrence F. Allard,David C. Joy
视频videohttp://file.papertrans.cn/474/473654/473654.mp4
图书封面Titlebook: Introduction to Electron Holography;  Edgar Völkl,Lawrence F. Allard,David C. Joy Book 1999 Springer Science+Business Media New York 1999 c
描述Experienced and novice holographers receive a solid foundationin the theory and practice of holography, the next generation ofimagingtechnology, in this superb text. The book‘s `how to‘ aspectsenablereaders to learn hologram acquisition at the microscope andprocessing of holograms at the computer as well as digital imagingtechniques. A complete bibliography on electron holography andapplications of the method to problems inmaterials science, physicsand the life sciences round out the volume‘s coverage.
出版日期Book 1999
关键词computer; electromagnetic field; electromagnetic fields; electron; energy; life sciences; material; materia
版次1
doihttps://doi.org/10.1007/978-1-4615-4817-1
isbn_softcover978-1-4613-7183-0
isbn_ebook978-1-4615-4817-1
copyrightSpringer Science+Business Media New York 1999
The information of publication is updating

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Principles and Theory of Electron Holography,f aberrations of electromagnetic lenses.. The essential means for doing this was the formation of an interference pattern between the electron wave scattered by the specimen and a reference wave of known form. The practical realization of this aim had to await the technological developments of small
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Optical Characteristics of an Holography Electron Microscope, that operate with field emission electron sources of various types. While many important results were obtained by early workers in the field. utilizing standard thermionic emitters or pointed filaments to obtain a measure of increased brightness and coherence, the field emission source provided a l
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Quantitative Electron Holography, hologram. Second, reconstruction of the hologram is required in order to extract the desired phase and/or amplitude of the electron wave which has passed through the object. Historically, hologram recording has been carried out photographically, and the subsequent reconstruction has been done optic
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The Reconstruction of Off-Axis Electron Holograms,e, on a Macintosh computer (G3 at 307 MHz), the reconstruction time for a 1024 by 1024 pixel image (including the display of the phase and amplitude image) is slightly below 4 seconds. On a DEC 3000 AXP 600 workstation the reconstruction time is about 8 seconds. For the live display of phase images,
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