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  1. AU="Claustre, Laurent"
  2. AU="Aithal, Advait R"
  3. AU="Hoppe, M"
  4. AU=Mohamed Islam N.
  5. AU="Ion Romulus Scorei"
  6. AU="Jarmusch, Scott A"
  7. AU="Rupesh Chikhale"
  8. AU=Mubarak Naeem
  9. AU="Lesbordes, Pierre"
  10. AU="Karine Bernardeau"
  11. AU="Post, Zachary D"
  12. AU="Mukherjee, Prattusha"
  13. AU="Yang, Wulin"
  14. AU=Jang Kyoung-Min
  15. AU="Shilpakar, Ramila"
  16. AU="Azad, Sajad"
  17. AU="Connolly, John A"
  18. AU="Šmit, Žiga"
  19. AU=Lee Geun Dong
  20. AU="Laireiter, Anton-Rupert"
  21. AU=Allen Larry A
  22. AU="Jamali, Myriam"
  23. AU="Lima-Filho, Moysés de Oliveira"
  24. AU="Bowen, Ceri"
  25. AU=Demidenko Eugene
  26. AU="Hashemi-Soteh, Mohammad Bagher"
  27. AU="Monfardini, Silvio"
  28. AU="Nasim, Aqeel"
  29. AU=Stennard Fiona A

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  1. Artikel ; Online: ID22 - the high-resolution powder-diffraction beamline at ESRF.

    Fitch, Andrew / Dejoie, Catherine / Covacci, Ezio / Confalonieri, Giorgia / Grendal, Ola / Claustre, Laurent / Guillou, Perceval / Kieffer, Jérôme / de Nolf, Wout / Petitdemange, Sébastien / Ruat, Marie / Watier, Yves

    Journal of synchrotron radiation

    2023  Band 30, Heft Pt 5, Seite(n) 1003–1012

    Abstract: Following Phase 2 of the upgrade of the ESRF in which the storage ring was replaced by a new low-emittance ring along with many other facility upgrades, the status of ID22, the high-resolution powder-diffraction beamline, is described. The beamline has ... ...

    Abstract Following Phase 2 of the upgrade of the ESRF in which the storage ring was replaced by a new low-emittance ring along with many other facility upgrades, the status of ID22, the high-resolution powder-diffraction beamline, is described. The beamline has an in-vacuum undulator as source providing X-rays in the range 6-75 keV. ID22's principle characteristics include very high angular resolution as a result of the highly collimated and monochromatic beam, coupled with a 13-channel Si 111 multi-analyser stage between the sample and a Dectris Eiger2 X 2M-W CdTe pixel detector. The detector's axial resolution allows recorded 2θ values to be automatically corrected for the effects of axial divergence, resulting in narrower and more-symmetric peaks compared with the previous fixed-axial-slit arrangement. The axial acceptance can also be increased with increasing diffraction angle, thus simultaneously improving the statistical quality of high-angle data. A complementary Perkin Elmer XRD1611 medical-imaging detector is available for faster, lower-resolution data, often used at photon energies of 60-70 keV for pair-distribution function analysis, although this is also possible in high-resolution mode by scanning up to 120° 2θ at 35 keV. There are various sample environments, allowing sample temperatures from 4 K to 1600°C, a capillary cell for non-corrosive gas atmospheres in the range 0-100 bar, and a sample-changing robot that can accommodate 75 capillary samples compatible with the temperature range 80 K to 950°C.
    Sprache Englisch
    Erscheinungsdatum 2023-07-18
    Erscheinungsland United States
    Dokumenttyp Journal Article
    ZDB-ID 2021413-3
    ISSN 1600-5775 ; 0909-0495
    ISSN (online) 1600-5775
    ISSN 0909-0495
    DOI 10.1107/S1600577523004915
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  2. Artikel: A multipurpose instrument for time-resolved ultra-small-angle and coherent X-ray scattering.

    Narayanan, Theyencheri / Sztucki, Michael / Van Vaerenbergh, Pierre / Léonardon, Joachim / Gorini, Jacques / Claustre, Laurent / Sever, Franc / Morse, John / Boesecke, Peter

    Journal of applied crystallography

    2018  Band 51, Heft Pt 6, Seite(n) 1511–1524

    Abstract: This article presents the main technical features and performance of the upgraded beamline ID02 at the ESRF. The beamline combines different small-angle X-ray scattering techniques in one unique instrument, enabling static and kinetic investigations from ...

    Abstract This article presents the main technical features and performance of the upgraded beamline ID02 at the ESRF. The beamline combines different small-angle X-ray scattering techniques in one unique instrument, enabling static and kinetic investigations from ångström to micrometre size scales and time resolution down to the sub-millisecond range. The main component of the instrument is an evacuated detector tube of length 34 m and diameter 2 m. Several different detectors are housed inside a motorized wagon that travels along a rail system, allowing an automated change of the sample-detector distance from about 1 to 31 m as well as selection of the desired detector. For optional combined wide-angle scattering measurements, a wide-angle detector is installed at the entrance cone of the tube. A scattering vector (of magnitude
    Sprache Englisch
    Erscheinungsdatum 2018-10-11
    Erscheinungsland United States
    Dokumenttyp Journal Article
    ZDB-ID 2020879-0
    ISSN 1600-5767 ; 0021-8898
    ISSN (online) 1600-5767
    ISSN 0021-8898
    DOI 10.1107/S1600576718012748
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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