Literature DB >> 12804284

Phase recovery and lensless imaging by iterative methods in optical, X-ray and electron diffraction.

J C H Spence1, U Weierstall, M Howells.   

Abstract

Thomas Young's quantitative analysis of interference effects provided the confidence needed to revive the wave theory of light, and firmly established the concept of phase in optics. Phase plays a similarly fundamental role in matter-wave interferometry, for which the field-emission electron microscope provides ideal instrumentation. The wave-particle duality is vividly demonstrated by experimental 'Young's fringes' using coherent electron beams under conditions in which the flight time is less than the time between particle emission. A brief historical review is given of electron interferometry and holography, including the Aharonov-Bohm effect and the electron Sagnac interferometer. The simultaneous development of phase-contrast imaging at subnanometre spatial resolution has greatly deepened our understanding of atomic processes in biology, materials science and condensed-matter physics, while electron holography has become a routine tool for the mapping of electrostatic and magnetic fields in materials on a nanometre scale. The encoding of phase information in scattered farfield intensities is discussed, and non-interferometric, non-crystallographic methods for phase retrieval are reviewed in relationship to electron holography. Examples of phase measurement and diffraction-limited imaging using the hybrid input-output iterative algorithm are given, including simulations for soft X-ray imaging, and new experimental results for coherent electron and visible-light scattering. Image reconstruction is demonstrated from experimental electron and visible-light Fraunhofer diffraction patterns. The prospects this provides for lensless imaging using particles for which no lenses exist (such as neutrons, condensates, coherent atom beams and X-rays) are discussed. These new interactions can be expected to provide new information, perhaps, for example, in biology, with the advantage of less damage to samples.

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Year:  2002        PMID: 12804284     DOI: 10.1098/rsta.2001.0972

Source DB:  PubMed          Journal:  Philos Trans A Math Phys Eng Sci        ISSN: 1364-503X            Impact factor:   4.226


  8 in total

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2.  Three-dimensional structure determination from a single view.

Authors:  Kevin S Raines; Sara Salha; Richard L Sandberg; Huaidong Jiang; Jose A Rodríguez; Benjamin P Fahimian; Henry C Kapteyn; Jincheng Du; Jianwei Miao
Journal:  Nature       Date:  2009-12-16       Impact factor: 49.962

3.  Nanoscale x-ray imaging of circuit features without wafer etching.

Authors:  Junjing Deng; Young Pyo Hong; Si Chen; Youssef S G Nashed; Tom Peterka; Anthony J F Levi; John Damoulakis; Sayan Saha; Travis Eiles; Chris Jacobsen
Journal:  Phys Rev B       Date:  2017-03-24       Impact factor: 4.036

4.  High-resolution x-ray diffraction microscopy of specifically labeled yeast cells.

Authors:  Johanna Nelson; Xiaojing Huang; Jan Steinbrener; David Shapiro; Janos Kirz; Stefano Marchesini; Aaron M Neiman; Joshua J Turner; Chris Jacobsen
Journal:  Proc Natl Acad Sci U S A       Date:  2010-04-05       Impact factor: 11.205

5.  Soft X-ray diffraction microscopy of a frozen hydrated yeast cell.

Authors:  Xiaojing Huang; Johanna Nelson; Janos Kirz; Enju Lima; Stefano Marchesini; Huijie Miao; Aaron M Neiman; David Shapiro; Jan Steinbrener; Andrew Stewart; Joshua J Turner; Chris Jacobsen
Journal:  Phys Rev Lett       Date:  2009-11-05       Impact factor: 9.161

6.  Coherent diffraction microscopy at SPring-8: instrumentation, data acquisition and data analysis.

Authors:  Rui Xu; Sara Salha; Kevin S Raines; Huaidong Jiang; Chien Chun Chen; Yukio Takahashi; Yoshiki Kohmura; Yoshinori Nishino; Changyong Song; Tetsuya Ishikawa; Jianwei Miao
Journal:  J Synchrotron Radiat       Date:  2011-01-21       Impact factor: 2.616

7.  Open data set of live cyanobacterial cells imaged using an X-ray laser.

Authors:  Gijs van der Schot; Martin Svenda; Filipe R N C Maia; Max F Hantke; Daniel P DePonte; M Marvin Seibert; Andrew Aquila; Joachim Schulz; Richard A Kirian; Mengning Liang; Francesco Stellato; Sadia Bari; Bianca Iwan; Jakob Andreasson; Nicusor Timneanu; Johan Bielecki; Daniel Westphal; Francisca Nunes de Almeida; Duško Odić; Dirk Hasse; Gunilla H Carlsson; Daniel S D Larsson; Anton Barty; Andrew V Martin; Sebastian Schorb; Christoph Bostedt; John D Bozek; Sebastian Carron; Ken Ferguson; Daniel Rolles; Artem Rudenko; Sascha W Epp; Lutz Foucar; Benedikt Rudek; Benjamin Erk; Robert Hartmann; Nils Kimmel; Peter Holl; Lars Englert; N Duane Loh; Henry N Chapman; Inger Andersson; Janos Hajdu; Tomas Ekeberg
Journal:  Sci Data       Date:  2016-08-01       Impact factor: 6.444

8.  Coherent Tabletop EUV Ptychography of Nanopatterns.

Authors:  Nguyen Xuan Truong; Reza Safaei; Vincent Cardin; Scott M Lewis; Xiang Li Zhong; François Légaré; Melissa A Denecke
Journal:  Sci Rep       Date:  2018-11-12       Impact factor: 4.379

  8 in total

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