Modeling Nanoscale Imaging in Electron Microscopy

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Release : 2012-03-02
Genre : Science
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Book Rating : 90X/5 ( reviews)

Modeling Nanoscale Imaging in Electron Microscopy - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Modeling Nanoscale Imaging in Electron Microscopy write by Thomas Vogt. This book was released on 2012-03-02. Modeling Nanoscale Imaging in Electron Microscopy available in PDF, EPUB and Kindle. This book presents advances in nanoscale imaging capabilities of scanning transmission electron microscopes, along with superresolution techniques, special denoising methods, application of mathematical/statistical learning theory, and compressed sensing.

Modeling Nanoscale Imaging in Electron Microscopy

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Release : 2012-03-02
Genre : Technology & Engineering
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Book Rating : 918/5 ( reviews)

Modeling Nanoscale Imaging in Electron Microscopy - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Modeling Nanoscale Imaging in Electron Microscopy write by Thomas Vogt. This book was released on 2012-03-02. Modeling Nanoscale Imaging in Electron Microscopy available in PDF, EPUB and Kindle. Modeling Nanoscale Imaging in Electron Microscopy presents the recent advances that have been made using mathematical methods to resolve problems in microscopy. With improvements in hardware-based aberration software significantly expanding the nanoscale imaging capabilities of scanning transmission electron microscopes (STEM), these mathematical models can replace some labor intensive procedures used to operate and maintain STEMs. This book, the first in its field since 1998, will also cover such relevant concepts as superresolution techniques, special denoising methods, application of mathematical/statistical learning theory, and compressed sensing.

Nanoscale Scale Imaging of Photoexcited States Using Electron Microscopy

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Release : 2021
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Nanoscale Scale Imaging of Photoexcited States Using Electron Microscopy - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Nanoscale Scale Imaging of Photoexcited States Using Electron Microscopy write by Ze Zhang. This book was released on 2021. Nanoscale Scale Imaging of Photoexcited States Using Electron Microscopy available in PDF, EPUB and Kindle. Seeing is believing. The ability to directly visualize things greatly deepens people's knowledge and advances researches in many fields. Apart from resolving tiny things, optical imaging can also provide spectroscopy information which offers fundamental insights into the energy states of matter. As research develops at the nanoscale, these energy states are often affected by nanostructuring and local defects of the sample. An imaging tool that can provide optical information with nanometer-scale spatial resolution will offer fundamental insights, greatly enhance our ability to design novel materials, and advance research in a wealth of areas. Optical spectroscopy and imaging techniques like Raman, photoluminescence, and infrared spectroscopy are widely used for materials characterization. Visible photons have energies (meV to eV) match with those of the energy states inside the material and thus process excellent spectral selectivity. However, the spatial resolution of traditional optical techniques is diffraction-limited by the wavelength of light used. Although various super-resolution techniques have been developed to overcome this diffraction limit and reached ~10 nm resolution, these techniques require fluorescent labels or a sharp scanning tip, which limits their application. On the other hand, modern scanning or transmission electron microscopes (SEM or TEM) can readily achieve nanometer and angstrom spatial resolution using 1-300 keV high-energy electrons. However, the energy mismatch between such high-energy electrons and the energy states inside the sample makes high spectral resolution challenging for electron microscopes. Only very recently can some state-of-the-art electron monochromators achieve meV energy resolution, but this requires expensive and specialized instruments. Nanometer and atomic resolution label-free imaging with optical information has remained a major scientific challenge. In the work presented in this thesis, we developed a new imaging technique named PhotoAbsorption Microscopy using ELectron Analysis (PAMELA). PAMELA combines the high spectral selectivity of photoexcitation and the high spatial resolution of electron microscopes to offer nanometer-scale imaging with optical information. We implement PAMELA on two platforms, an SEM and a TEM, to demonstrate optical imaging first below the optical diffraction limit and eventually at the atomic scale resolution. For PAMELA-SEM, we experimentally demonstrate spectrally specific photoabsorption imaging with sub-20 nanometer spatial resolution using various semiconductor and metal nanoparticles. The photoabsorption-induced contrast mechanism is attributed to surface photovoltage which modulates the secondary electron emission. Theoretical analysis and Monte Carlo simulations are performed to explain the trends of the signal observed. For PAMELA-TEM, we discuss the possibility of imaging photoexcited states with atomic-scale resolution. We design an experimental set-up based on high-resolution TEM (HRTEM) and use ab initio together with HRTEM simulations to calculate the imaging conditions required for a few model systems, including defects in hexagonal boron nitride (h-BN) and core-shell quantum dots. We believe PAMELA will offer new opportunities for nanometer-scale optical spectroscopic imaging and material characterization.

Progress in Nanoscale Characterization and Manipulation

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Release : 2018-08-30
Genre : Science
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Book Rating : 548/5 ( reviews)

Progress in Nanoscale Characterization and Manipulation - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Progress in Nanoscale Characterization and Manipulation write by Rongming Wang. This book was released on 2018-08-30. Progress in Nanoscale Characterization and Manipulation available in PDF, EPUB and Kindle. This book focuses on charged-particle optics and microscopy, as well as their applications in the materials sciences. Presenting a range of cutting-edge theoretical and methodological advances in electron microscopy and microanalysis, and examining their crucial roles in modern materials research, it offers a unique resource for all researchers who work in ultramicroscopy and/or materials research. The book addresses the growing opportunities in this field and introduces readers to the state of the art in charged-particle microscopy techniques. It showcases recent advances in scanning electron microscopy, transmission electron microscopy and helium ion microscopy, including advanced spectroscopy, spherical-corrected microscopy, focused-ion imaging and in-situ microscopy. Covering these and other essential topics, the book is intended to facilitate the development of microscopy techniques, inspire young researchers, and make a valuable contribution to the field.

Scanning Transmission Electron Microscopy

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Release : 2011-03-24
Genre : Technology & Engineering
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Book Rating : 005/5 ( reviews)

Scanning Transmission Electron Microscopy - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Scanning Transmission Electron Microscopy write by Stephen J. Pennycook. This book was released on 2011-03-24. Scanning Transmission Electron Microscopy available in PDF, EPUB and Kindle. Scanning transmission electron microscopy has become a mainstream technique for imaging and analysis at atomic resolution and sensitivity, and the authors of this book are widely credited with bringing the field to its present popularity. Scanning Transmission Electron Microscopy(STEM): Imaging and Analysis will provide a comprehensive explanation of the theory and practice of STEM from introductory to advanced levels, covering the instrument, image formation and scattering theory, and definition and measurement of resolution for both imaging and analysis. The authors will present examples of the use of combined imaging and spectroscopy for solving materials problems in a variety of fields, including condensed matter physics, materials science, catalysis, biology, and nanoscience. Therefore this will be a comprehensive reference for those working in applied fields wishing to use the technique, for graduate students learning microscopy for the first time, and for specialists in other fields of microscopy.