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On ultrafast x-ray scattering methods for magnetism

Authors :
R. Plumley
S. R. Chitturi
C. Peng
T. A. Assefa
N. Burdet
L. Shen
Z. Chen
A. H. Reid
G. L. Dakovski
M. H. Seaberg
F. O’Dowd
S. A. Montoya
H. Chen
A. Okullo
S. Mardanya
S. D. Kevan
P. Fischer
E. E. Fullerton
S. K. Sinha
W. Colocho
A. Lutman
F.-J. Decker
S. Roy
J. Fujioka
Y. Tokura
M. P. Minitti
J. A. Johnson
M. Hoffmann
M. E. Amoo
A. Feiguin
C. Yoon
J. Thayer
Y. Nashed
C. Jia
A. Bansil
S. Chowdhury
A. M. Lindenberg
M. Dunne
E. Blackburn
J. J. Turner
Source :
Advances in Physics: X, Vol 9, Iss 1 (2024)
Publication Year :
2024
Publisher :
Taylor & Francis Group, 2024.

Abstract

With the introduction of x-ray free electron laser sources around the world, new scientific approaches for visualizing matter at fundamental length and time-scales have become possible. As it relates to magnetism and ‘magnetic-type’ systems, advanced scattering methods are being developed for studying ultrafast magnetic responses on the time-scales at which they occur. We describe three capabilities which have the potential to seed new directions in this area and presentoriginal results from each: pump-probe x-ray scattering with low energy excitation, x-ray photon fluctuation spectroscopy, and ultrafast diffuse x-ray scattering. By combining these experimental techniques with advanced modeling together with machine learning, we describe how the combination of these domains allows for a new understanding in the field of magnetism. Finally, we give an outlook for future areas of investigation and the newly developed instruments which will take us there.

Details

Language :
English
ISSN :
23746149
Volume :
9
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Advances in Physics: X
Publication Type :
Academic Journal
Accession number :
edsdoj.9ff11290a9b341ff85fc1e3ad7ad0088
Document Type :
article
Full Text :
https://doi.org/10.1080/23746149.2024.2423935