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標(biāo)題: Titlebook: Electron Holography; Akira Tonomura Book 19931st edition Springer-Verlag Berlin Heidelberg 1993 Aharanov-Bohm effect.Holography.electron h [打印本頁]

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書目名稱Electron Holography影響因子(影響力)




書目名稱Electron Holography影響因子(影響力)學(xué)科排名




書目名稱Electron Holography網(wǎng)絡(luò)公開度




書目名稱Electron Holography網(wǎng)絡(luò)公開度學(xué)科排名




書目名稱Electron Holography被引頻次




書目名稱Electron Holography被引頻次學(xué)科排名




書目名稱Electron Holography年度引用




書目名稱Electron Holography年度引用學(xué)科排名




書目名稱Electron Holography讀者反饋




書目名稱Electron Holography讀者反饋學(xué)科排名





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https://doi.org/10.1007/978-3-662-28612-8e combination of concave and convex lenses in the electron case because of the lack of a concave electron lens, the resolution is determined by the aberrations of the objective lens and not by the fundamental limit of the electron wavelength. In fact, it was theoretically verified by . [8.1] that an
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Oscar Gans,Gerd-Klaus Steigleder use of coherent beams from both a laser and a field-emission electron beam. Holography faithfully transforms electron wave fronts into optical wave fronts, enabling versatile optical techniques to become applicable to electron optics. The original objective of holography was to break through the re
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Springer-Verlag Berlin Heidelberg 1993
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Electron Holography978-3-662-13913-4Series ISSN 0342-4111 Series E-ISSN 1556-1534
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Guido Massi M.D.,Philip E. Leboit M.D.This chapter briefly introduces electron optics, emphasizing those aspects that are important for holography.
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Introduction,tical image by illuminating the hologram with a laser beam. In this process, electron wave fronts are transformed into optical wave fronts. Images of microscopic objects and fields that are so small that they can be observed only by using an electron beam with an extremely short wavelength are enlar
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Historical Development of Electron Holography,vergent spherical wave from a point focus close to the object (Fig.4.1). This kind of hologram is a highly magnified projected interference pattern between the object and the transmitted waves. No lenses are necessary, but this method requires a very small electron point focus. The diameter of the f
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Aharonov-Bohm Effect: The Principle Behind the Interaction of Electrons with Electromagnetic Fieldsd as follows: In classical electrodynamics, potentials are merely a convenient mathematical tool for calculations concerning electromagnetic fields. The fundamental equations can always be formulated using these fields. However, in quantum mechanics potentials cannot be eliminated from the Schr?ding
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Electron-Holographic Interferometry,ence micrograph. Although an interference micrograph can also be obtained without recourse to holography if we use an electron microscope equipped with an electron biprism (Sect.3.2), electron holography allows contour maps to be observed and the phase to be measured with a precision as high as 27π/
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High-Resolution Microscopy,e combination of concave and convex lenses in the electron case because of the lack of a concave electron lens, the resolution is determined by the aberrations of the objective lens and not by the fundamental limit of the electron wavelength. In fact, it was theoretically verified by . [8.1] that an
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Knochen und Knochenverbindungenents. These experiments were intended to clarify how potentials affect electrons passing through field-free regions. The phenomenon these researchers described came to be called the . (AB) . in their honor.
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Aharonov-Bohm Effect: The Principle Behind the Interaction of Electrons with Electromagnetic Fieldsents. These experiments were intended to clarify how potentials affect electrons passing through field-free regions. The phenomenon these researchers described came to be called the . (AB) . in their honor.
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Introduction,microscopic objects and fields that are so small that they can be observed only by using an electron beam with an extremely short wavelength are enlarged and reconstructed on an optical bench. This allows versatile optical techniques to be applied to overcome the limitations of electron microscopes.
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Oscar Gans,Gerd-Klaus Steigledersolution limit of electron microscopes by compensating, in the optical reconstruction stage, for the spherical aberration of the electron lens. Attempts have been made to actually achieve this objective, thus increasing the levels of technology to where we are on the brink of improving the resolution and making new discoveries.
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Guido Massi M.D.,Philip E. LeBoit M.D.tween the object and the transmitted waves. No lenses are necessary, but this method requires a very small electron point focus. The diameter of the focus determines the resolution of the reconstructed image.
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https://doi.org/10.1007/978-3-662-28612-8errations of the objective lens and not by the fundamental limit of the electron wavelength. In fact, it was theoretically verified by . [8.1] that an axially-symmetric magnetic field can function only as a convex lens for an electron beam.
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Electron-Holographic Interferometry,100. The development of electron-holographic interferometry allows us to see objects that were not visible when using conventional electron microscopes in which only the intensity of an electron beam is observed.
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Conclusions,solution limit of electron microscopes by compensating, in the optical reconstruction stage, for the spherical aberration of the electron lens. Attempts have been made to actually achieve this objective, thus increasing the levels of technology to where we are on the brink of improving the resolution and making new discoveries.
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Predicting Phenology of Pear Thrips Emergence in Pennsylvania Sugar Maple Standsmation is soil temperature near the surface, where adults overwinter, rather than air temperature. Also, cessation of pear thrips overwintering may depend on a chilling requirement followed by thermal summation to promote development to emergence. Both possibilities should be explored through additional analyses and experiments.
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Jürgen Wendland,Andrea Walthercificity rates [5–7]. FNA has the potential to change the clinical approach in up to one third of patients [8]. The high accuracy of salivary gland FNA benefits from high frequencies of certain tumors with relatively unique cytologic features, including matrix component in the smears. The main purpo
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Byron P. Roeroximate values from a discrete set. A major concern of the theory is the number of com- putation steps required to solve a problem, as a function of the length of the input string.978-1-4612-6873-4978-1-4612-0701-6
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Mathematical Physics and Formalized Epistermology: Debate with Jean Petitot emphasizes the transcendental content of symmetries in modern physical theories, from general relativity to gauge invariance. A great deal of the discussion focuses on epistemological key points in quantum mechanics.
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Energie-?Dissipation“ in der Strahlenchemie. Mehrzentren-TerminationTeilprozesse strahle




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