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X-ray fluorescence detection for serial macromolecular crystallography using a JUNGFRAU pixel detector.


ABSTRACT: Detection of heavy elements, such as metals, in macromolecular crystallography (MX) samples by X-ray fluorescence is a function traditionally covered at synchrotron MX beamlines by silicon drift detectors, which cannot be used at X-ray free-electron lasers because of the very short duration of the X-ray pulses. Here it is shown that the hybrid pixel charge-integrating detector JUNGFRAU can fulfill this function when operating in a low-flux regime. The feasibility of precise position determination of micrometre-sized metal marks is also demonstrated, to be used as fiducials for offline prelocation in serial crystallography experiments, based on the specific fluorescence signal measured with JUNGFRAU, both at the synchrotron and at SwissFEL. Finally, the measurement of elemental absorption edges at a synchrotron beamline using JUNGFRAU is also demonstrated.

SUBMITTER: Martiel I 

PROVIDER: S-EPMC7064105 | biostudies-literature | 2020 Mar

REPOSITORIES: biostudies-literature

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X-ray fluorescence detection for serial macromolecular crystallography using a JUNGFRAU pixel detector.

Martiel Isabelle I   Mozzanica Aldo A   Opara Nadia L NL   Panepucci Ezequiel E   Leonarski Filip F   Redford Sophie S   Mohacsi Istvan I   Guzenko Vitaliy V   Ozerov Dmitry D   Padeste Celestino C   Schmitt Bernd B   Pedrini Bill B   Wang Meitian M  

Journal of synchrotron radiation 20200207 Pt 2


Detection of heavy elements, such as metals, in macromolecular crystallography (MX) samples by X-ray fluorescence is a function traditionally covered at synchrotron MX beamlines by silicon drift detectors, which cannot be used at X-ray free-electron lasers because of the very short duration of the X-ray pulses. Here it is shown that the hybrid pixel charge-integrating detector JUNGFRAU can fulfill this function when operating in a low-flux regime. The feasibility of precise position determinatio  ...[more]

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