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Time-spliced X-ray diffraction imaging of magnetism dynamics in a NdNiO3 thin film.


ABSTRACT: Diffraction imaging of nonequilibrium dynamics at atomic resolution is becoming possible with X-ray free-electron lasers. However, there are unresolved problems with applying this method to objects that are confined in only one dimension. Here I show that reliable one-dimensional coherent diffraction imaging is possible by splicing together images recovered from different time delays in an optical pump X-ray probe experiment. The time and space evolution of antiferromagnetic order in a vibrationally excited complex oxide heterostructure is recovered from time-resolved measurements of a resonant soft X-ray diffraction peak. Midinfrared excitation of the substrate is shown to lead to a demagnetization front that propagates at a velocity exceeding the speed of sound, a critical observation for the understanding of driven phase transitions in complex condensed matter.

SUBMITTER: Beyerlein KR 

PROVIDER: S-EPMC5834687 | biostudies-other | 2018 Feb

REPOSITORIES: biostudies-other

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Time-spliced X-ray diffraction imaging of magnetism dynamics in a NdNiO<sub>3</sub> thin film.

Beyerlein Kenneth R KR  

Proceedings of the National Academy of Sciences of the United States of America 20180213 9


Diffraction imaging of nonequilibrium dynamics at atomic resolution is becoming possible with X-ray free-electron lasers. However, there are unresolved problems with applying this method to objects that are confined in only one dimension. Here I show that reliable one-dimensional coherent diffraction imaging is possible by splicing together images recovered from different time delays in an optical pump X-ray probe experiment. The time and space evolution of antiferromagnetic order in a vibration  ...[more]

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