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Titlebook: Nanoscale Photonic Imaging; Tim Salditt,Alexander Egner,D. Russell Luke Book‘‘‘‘‘‘‘‘ 2020 The Editor(s) (if applicable) and The Author(s)

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書目名稱Nanoscale Photonic Imaging
編輯Tim Salditt,Alexander Egner,D. Russell Luke
視頻videohttp://file.papertrans.cn/661/660948/660948.mp4
概述Provides an ideal introduction to, and survey of the exciting field of nanoscale imaging with photons.Open access book suited to graduate students and researchers.Presents a record of the immense prog
叢書名稱Topics in Applied Physics
圖書封面Titlebook: Nanoscale Photonic Imaging;  Tim Salditt,Alexander Egner,D. Russell Luke Book‘‘‘‘‘‘‘‘ 2020 The Editor(s) (if applicable) and The Author(s)
描述.This open access book, edited and authored by a team of world-leading researchers, provides a broad overview of advanced photonic methods for nanoscale visualization, as well as describing a range of fascinating in-depth studies. Introductory chapters cover the most relevant physics and basic methods that young researchers need to master in order to work effectively in the field of nanoscale photonic imaging, from physical first principles, to instrumentation, to mathematical foundations of imaging and data analysis.? Subsequent chapters demonstrate how these cutting edge methods are applied to a variety of systems, including complex fluids and biomolecular systems, for visualizing their structure and dynamics, in space and on timescales extending over many orders of magnitude down to the femtosecond range. . . Progress in nanoscale photonic imaging in G?ttingen has been the sum total of more than a decade of work by a wide range of scientists and mathematicians across disciplines, working together in a vibrant collaboration of a kind rarely matched. This volume presents the highlights of their research achievements and serves as a record of the unique and remarkable constellation
出版日期Book‘‘‘‘‘‘‘‘ 2020
關(guān)鍵詞X-ray optics; X-ray imaging; Mathematical imaging; Sub-diffraction optical microscopy; Multidimensional
版次1
doihttps://doi.org/10.1007/978-3-030-34413-9
isbn_softcover978-3-030-34415-3
isbn_ebook978-3-030-34413-9Series ISSN 0303-4216 Series E-ISSN 1437-0859
issn_series 0303-4216
copyrightThe Editor(s) (if applicable) and The Author(s) 2020
The information of publication is updating

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Quantifying Molecule Numbers in STED/RESOLFT Fluorescence Nanoscopyes. Carefully relating the measured signals from STED or RESOLFT scanning nanoscopy data to the contribution of a single molecule, reliable estimates of fluorescent molecule numbers can be obtained. To achieve this, higher-order signatures in the obtained photon statistics are analyzed, as arise fro
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Reversibly Switchable Fluorescent Proteins for RESOLFT Nanoscopyy) approaches that fundamentally overcome the diffraction barrier rely on fluorophores that can adopt different states, typically a fluorescent ‘on-’state and a dark, non-fluorescent ‘off-’state. In reversible saturable optical linear fluorescence transitions (RESOLFT) nanoscopy, light is applied to
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