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

XFELs clusters coherent diffractive imaging computation electron density phase problem single particles structure reconstruction

Journal

IUCrJ
ISSN: 2052-2525
Titre abrégé: IUCrJ
Pays: England
ID NLM: 101623101

Informations de publication

Date de publication:
01 Jan 2020
Historique:
received: 20 05 2019
accepted: 17 10 2019
entrez: 18 1 2020
pubmed: 18 1 2020
medline: 18 1 2020
Statut: epublish

Résumé

With the emergence of X-ray free-electron lasers, it is possible to investigate the structure of nanoscale samples by employing coherent diffractive imaging in the X-ray spectral regime. In this work, we developed a refinement method for structure reconstruction applicable to low-quality coherent diffraction data. The method is based on the gradient search method and considers the missing region of a diffraction pattern and the small number of detected photons. We introduced an initial estimate of the structure in the method to improve the convergence. The present method is applied to an experimental diffraction pattern of an Xe cluster obtained in an X-ray scattering experiment at the SPring-8 Angstrom Compact free-electron LAser (SACLA) facility. It is found that the electron density is successfully reconstructed from the diffraction pattern with a large missing region, with a good initial estimate of the structure. The diffraction pattern calculated from the reconstructed electron density reproduced the observed diffraction pattern well, including the characteristic intensity modulation in each ring. Our refinement method enables structure reconstruction from diffraction patterns under difficulties such as missing areas and low diffraction intensity, and it is potentially applicable to the structure determination of samples that have low scattering power.

Identifiants

pubmed: 31949900
doi: 10.1107/S2052252519014222
pii: cw5023
pmc: PMC6949595
doi:

Types de publication

Journal Article

Langues

eng

Pagination

10-17

Informations de copyright

© Nishiyama et al. 2020.

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Auteurs

Toshiyuki Nishiyama (T)

Division of Physics and Astronomy, Kyoto University, Kyoto 606-8501, Japan.
RIKEN SPring-8 Center, Sayo, Hyogo 679-5148, Japan.

Akinobu Niozu (A)

Division of Physics and Astronomy, Kyoto University, Kyoto 606-8501, Japan.
RIKEN SPring-8 Center, Sayo, Hyogo 679-5148, Japan.

Christoph Bostedt (C)

Linac Coherent Light Source, SLAC National Accelerator Laboratory, Menlo Park, CA 94025, USA.
Chemical Sciences and Engineering Division, Argonne National Laboratory, 9700 S. Cass Avenue, Lemont IL 60439, USA.
Paul-Scherrer Institute, CH-5232 Villigen PSI, Switzerland.
LUXS Laboratory for Ultrafast X-ray Sciences, Institute of Chemical Sciences and Engineering, École Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.

Ken R Ferguson (KR)

Linac Coherent Light Source, SLAC National Accelerator Laboratory, Menlo Park, CA 94025, USA.

Yuhiro Sato (Y)

Division of Physics and Astronomy, Kyoto University, Kyoto 606-8501, Japan.

Christopher Hutchison (C)

Division of Physics and Astronomy, Kyoto University, Kyoto 606-8501, Japan.

Kiyonobu Nagaya (K)

Division of Physics and Astronomy, Kyoto University, Kyoto 606-8501, Japan.
RIKEN SPring-8 Center, Sayo, Hyogo 679-5148, Japan.

Hironobu Fukuzawa (H)

RIKEN SPring-8 Center, Sayo, Hyogo 679-5148, Japan.
Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Sendai 980-8577, Japan.

Koji Motomura (K)

Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Sendai 980-8577, Japan.

Shin-Ichi Wada (SI)

RIKEN SPring-8 Center, Sayo, Hyogo 679-5148, Japan.
Department of Physical Science, Hiroshima University, Higashi-Hiroshima 739-8526, Japan.

Tsukasa Sakai (T)

Division of Physics and Astronomy, Kyoto University, Kyoto 606-8501, Japan.

Kenji Matsunami (K)

Division of Physics and Astronomy, Kyoto University, Kyoto 606-8501, Japan.

Kazuhiro Matsuda (K)

Division of Physics and Astronomy, Kyoto University, Kyoto 606-8501, Japan.

Tetsuya Tachibana (T)

Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Sendai 980-8577, Japan.

Yuta Ito (Y)

Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Sendai 980-8577, Japan.

Weiqing Xu (W)

Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Sendai 980-8577, Japan.

Subhendu Mondal (S)

Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Sendai 980-8577, Japan.

Takayuki Umemoto (T)

Department of Physical Science, Hiroshima University, Higashi-Hiroshima 739-8526, Japan.

Christophe Nicolas (C)

Synchrotron SOLEIL, l'Orme des Merisiers, Saint-Aubin, BP 48, 91192 Gif-sur-Yvette Cedex, France.

Catalin Miron (C)

Synchrotron SOLEIL, l'Orme des Merisiers, Saint-Aubin, BP 48, 91192 Gif-sur-Yvette Cedex, France.
Extreme Light Infrastructure - Nuclear Physics (ELI-NP), "Horia Hulubei" National Institute for Physics and Nuclear Engineering, 30 Reactorului Street, Măgurele RO-077125, Jud.Ilfov, Romania.
LIDYL, CEA, CNRS, Université Paris-Saclay, CEA Saclay, 91191 Gif-sur-Yvette, France.

Takashi Kameshima (T)

Japan Synchrotron Radiation Research Institute (JASRI), Sayo, Hyogo 679-5198, Japan.

Yasumasa Joti (Y)

Japan Synchrotron Radiation Research Institute (JASRI), Sayo, Hyogo 679-5198, Japan.

Kensuke Tono (K)

Japan Synchrotron Radiation Research Institute (JASRI), Sayo, Hyogo 679-5198, Japan.

Takaki Hatsui (T)

RIKEN SPring-8 Center, Sayo, Hyogo 679-5148, Japan.

Makina Yabashi (M)

RIKEN SPring-8 Center, Sayo, Hyogo 679-5148, Japan.

Kiyoshi Ueda (K)

RIKEN SPring-8 Center, Sayo, Hyogo 679-5148, Japan.
Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Sendai 980-8577, Japan.

Classifications MeSH