Nanoscale Photonic Imaging
著者
書誌事項
Nanoscale Photonic Imaging
(Topics in applied physics, v. 134)
Springer, c2020
大学図書館所蔵 全7件
  青森
  岩手
  宮城
  秋田
  山形
  福島
  茨城
  栃木
  群馬
  埼玉
  千葉
  東京
  神奈川
  新潟
  富山
  石川
  福井
  山梨
  長野
  岐阜
  静岡
  愛知
  三重
  滋賀
  京都
  大阪
  兵庫
  奈良
  和歌山
  鳥取
  島根
  岡山
  広島
  山口
  徳島
  香川
  愛媛
  高知
  福岡
  佐賀
  長崎
  熊本
  大分
  宮崎
  鹿児島
  沖縄
  韓国
  中国
  タイ
  イギリス
  ドイツ
  スイス
  フランス
  ベルギー
  オランダ
  スウェーデン
  ノルウェー
  アメリカ
注記
Includes bibliographical references and index
内容説明・目次
内容説明
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 Goettingen 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 of contributors, as well as looking ahead at the future prospects in this field. It will serve not only as a useful reference for experienced researchers but also as a valuable point of entry for newcomers.
目次
Part I: Fundamentals and Tutorials.- Basic Knowledge in STED Nanoscopy (A. Egner, C. Geisler, and R. Siegmund).- Basic Knowledge in Coherent X-ray Imaging (T. Salditt, A.-L. Robisch).- Basic Knowledge: X-ray Focusing & Optics (T. Salditt and M. Osterhoff).- Statistical Foundations of Nanoscale Photonic Imaging (A. Munk, T. Staudt, and F. Werner).- Inverse Problems (T. Hohage, B. Sprung, and F. Weidling).- Proximal Methods for Image Processing (D. R. Luke).- Part II: Progress and Perspectives.- Quantifying the Number of Molecules in STED/RESOLFT Nanoscopy (J. Keller-Findeisen, S. Sahl, and S. W. Hell).- Metal-Induced Energy Transfer Imaging (A. I. Chizhik, and J. Enderlein).- Reversibly Switchable Fluorescent Proteins for RESOLFT Nanoscopy (N. A. Jensen, I. Jansen, M. Kamper, and S. Jakobs).- A Statistical and Biophysical Toolbox to Elucidate Structure and Formation of Stress Fibers (B. Eltzner, L. Hauke, S. Huckemann, F. Fehfeldt, and C. Wollnik).- Photonic Imaging with Statistical Guarantees: From Multiscale Testing to Multiscale Estimation (A. Munk, K. Proksch, H. Li, and F. Werner).- Efficient, Quantitative Numerical Methods for Statistical Image Deconvolution and Denoising (D. R. Luke, C. Charitha, R. Shefi, and Y. Malitsky).- Holographic Imaging and Tomography of Biological Cells and Tissues (T. Salditt, and M. Toepperwien).- Constrained Reconstructions in X-ray Phase Contrast Imaging: Uniqueness, Stability and Algorithms (S. Maretzke, T. Hohage).- Scanning Small-Angle X-ray Scattering and Coherent X-ray Imaging of Cells (T. Salditt and S. Koester).- Single Particle Imaging with FEL using Photon Correlations (B. von Ardenne and H. Grubmuller).- Development of Ultrafast X-ray Free Electron Laser Tools in (Bio)Chemical Research (S. Techert, S. Thekku Veedu, S. Bari).- Polarization-sensitive Coherent Diffractive Imaging Using HHG (S. Zayko, O. Kfir, and C. Ropers).- Nonlinear Light Generation in Localized Fields Using Gases and Tailored Solids (M. Sivis and C. Ropers).- Wavefront and Coherence Characteristics of Extreme UV and Soft X-ray Sources (B. Schafer, B. Floeter, T. Mey, and K. Mann).- Laboratory-scale Soft X-ray Source for Microscopy and Absorption Spectroscopy (M. Muller and K. Mann).- Multilayer Zone Plates for Hard X-ray Imaging (M. Osterhoff and H.-U. Krebs).- Convergence Analysis of Iteraive Algorithms for Phase Retrieval (D. R. Luke and A.-L. Martins).- One-Dimensional Discrete-Time Phase Retrieval (R. Beinert and G. Plonka).
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