Literature DB >> 22714377

Femtosecond dark-field imaging with an X-ray free electron laser.

A V Martin1, N D Loh, C Y Hampton, R G Sierra, F Wang, A Aquila, S Bajt, M Barthelmess, C Bostedt, J D Bozek, N Coppola, S W Epp, B Erk, H Fleckenstein, L Foucar, M Frank, H Graafsma, L Gumprecht, A Hartmann, R Hartmann, G Hauser, H Hirsemann, P Holl, S Kassemeyer, N Kimmel, M Liang, L Lomb, F R N C Maia, S Marchesini, K Nass, E Pedersoli, C Reich, D Rolles, B Rudek, A Rudenko, J Schulz, R L Shoeman, H Soltau, D Starodub, J Steinbrener, F Stellato, L Strüder, J Ullrich, G Weidenspointner, T A White, C B Wunderer, A Barty, I Schlichting, M J Bogan, H N Chapman.   

Abstract

The emergence of femtosecond diffractive imaging with X-ray lasers has enabled pioneering structural studies of isolated particles, such as viruses, at nanometer length scales. However, the issue of missing low frequency data significantly limits the potential of X-ray lasers to reveal sub-nanometer details of micrometer-sized samples. We have developed a new technique of dark-field coherent diffractive imaging to simultaneously overcome the missing data issue and enable us to harness the unique contrast mechanisms available in dark-field microscopy. Images of airborne particulate matter (soot) up to two microns in length were obtained using single-shot diffraction patterns obtained at the Linac Coherent Light Source, four times the size of objects previously imaged in similar experiments. This technique opens the door to femtosecond diffractive imaging of a wide range of micrometer-sized materials that exhibit irreproducible complexity down to the nanoscale, including airborne particulate matter, small cells, bacteria and gold-labeled biological samples.

Mesh:

Substances:

Year:  2012        PMID: 22714377     DOI: 10.1364/OE.20.013501

Source DB:  PubMed          Journal:  Opt Express        ISSN: 1094-4087            Impact factor:   3.894


  8 in total

1.  Cancer cell classification with coherent diffraction imaging using an extreme ultraviolet radiation source.

Authors:  Michael Zürch; Stefan Foertsch; Mark Matzas; Katharina Pachmann; Rainer Kuth; Christian Spielmann
Journal:  J Med Imaging (Bellingham)       Date:  2014-10-03

2.  X-ray-Based Techniques to Study the Nano-Bio Interface.

Authors:  Carlos Sanchez-Cano; Ramon A Alvarez-Puebla; John M Abendroth; Tobias Beck; Robert Blick; Yuan Cao; Frank Caruso; Indranath Chakraborty; Henry N Chapman; Chunying Chen; Bruce E Cohen; Andre L C Conceição; David P Cormode; Daxiang Cui; Kenneth A Dawson; Gerald Falkenberg; Chunhai Fan; Neus Feliu; Mingyuan Gao; Elisabetta Gargioni; Claus-C Glüer; Florian Grüner; Moustapha Hassan; Yong Hu; Yalan Huang; Samuel Huber; Nils Huse; Yanan Kang; Ali Khademhosseini; Thomas F Keller; Christian Körnig; Nicholas A Kotov; Dorota Koziej; Xing-Jie Liang; Beibei Liu; Sijin Liu; Yang Liu; Ziyao Liu; Luis M Liz-Marzán; Xiaowei Ma; Andres Machicote; Wolfgang Maison; Adrian P Mancuso; Saad Megahed; Bert Nickel; Ferdinand Otto; Cristina Palencia; Sakura Pascarelli; Arwen Pearson; Oula Peñate-Medina; Bing Qi; Joachim Rädler; Joseph J Richardson; Axel Rosenhahn; Kai Rothkamm; Michael Rübhausen; Milan K Sanyal; Raymond E Schaak; Heinz-Peter Schlemmer; Marius Schmidt; Oliver Schmutzler; Theo Schotten; Florian Schulz; A K Sood; Kathryn M Spiers; Theresa Staufer; Dominik M Stemer; Andreas Stierle; Xing Sun; Gohar Tsakanova; Paul S Weiss; Horst Weller; Fabian Westermeier; Ming Xu; Huijie Yan; Yuan Zeng; Ying Zhao; Yuliang Zhao; Dingcheng Zhu; Ying Zhu; Wolfgang J Parak
Journal:  ACS Nano       Date:  2021-03-02       Impact factor: 15.881

3.  Single-particle structure determination by correlations of snapshot X-ray diffraction patterns.

Authors:  D Starodub; A Aquila; S Bajt; M Barthelmess; A Barty; C Bostedt; J D Bozek; N Coppola; R B Doak; S W Epp; B Erk; L Foucar; L Gumprecht; C Y Hampton; A Hartmann; R Hartmann; P Holl; S Kassemeyer; N Kimmel; H Laksmono; M Liang; N D Loh; L Lomb; A V Martin; K Nass; C Reich; D Rolles; B Rudek; A Rudenko; J Schulz; R L Shoeman; R G Sierra; H Soltau; J Steinbrener; F Stellato; S Stern; G Weidenspointner; M Frank; J Ullrich; L Strüder; I Schlichting; H N Chapman; J C H Spence; M J Bogan
Journal:  Nat Commun       Date:  2012       Impact factor: 14.919

Review 4.  Methods and application of coherent X-ray diffraction imaging of noncrystalline particles.

Authors:  Masayoshi Nakasako; Amane Kobayashi; Yuki Takayama; Kenta Asakura; Mao Oide; Koji Okajima; Tomotaka Oroguchi; Masaki Yamamoto
Journal:  Biophys Rev       Date:  2020-03-16

5.  Phase retrieval by coherent modulation imaging.

Authors:  Fucai Zhang; Bo Chen; Graeme R Morrison; Joan Vila-Comamala; Manuel Guizar-Sicairos; Ian K Robinson
Journal:  Nat Commun       Date:  2016-11-18       Impact factor: 14.919

6.  The linac coherent light source single particle imaging road map.

Authors:  A Aquila; A Barty; C Bostedt; S Boutet; G Carini; D dePonte; P Drell; S Doniach; K H Downing; T Earnest; H Elmlund; V Elser; M Gühr; J Hajdu; J Hastings; S P Hau-Riege; Z Huang; E E Lattman; F R N C Maia; S Marchesini; A Ourmazd; C Pellegrini; R Santra; I Schlichting; C Schroer; J C H Spence; I A Vartanyants; S Wakatsuki; W I Weis; G J Williams
Journal:  Struct Dyn       Date:  2015-04-21       Impact factor: 2.920

7.  CFEL-ASG Software Suite (CASS): usage for free-electron laser experiments with biological focus.

Authors:  Lutz Foucar
Journal:  J Appl Crystallogr       Date:  2016-06-23       Impact factor: 3.304

8.  Refinement for single-nanoparticle structure determination from low-quality single-shot coherent diffraction data.

Authors:  Toshiyuki Nishiyama; Akinobu Niozu; Christoph Bostedt; Ken R Ferguson; Yuhiro Sato; Christopher Hutchison; Kiyonobu Nagaya; Hironobu Fukuzawa; Koji Motomura; Shin-Ichi Wada; Tsukasa Sakai; Kenji Matsunami; Kazuhiro Matsuda; Tetsuya Tachibana; Yuta Ito; Weiqing Xu; Subhendu Mondal; Takayuki Umemoto; Christophe Nicolas; Catalin Miron; Takashi Kameshima; Yasumasa Joti; Kensuke Tono; Takaki Hatsui; Makina Yabashi; Kiyoshi Ueda
Journal:  IUCrJ       Date:  2020-01-01       Impact factor: 4.769

  8 in total

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