Protocols for x-ray transient grating pump/optical probe experiments at x-ray free electron lasers

Author:

Fainozzi DannyORCID,Cucini Riccardo,Vila-Comamala Joan,Lima Frederico,Ardana-Lamas Fernando,Bañares Luis,Bargheer Matias,Bencivenga FilippoORCID,Berndt NadiaORCID,Beye MartinORCID,Biednov Mykola,Bonetti StefanoORCID,Brioschi Marta,Cannizzo Andrea,Carrara PietroORCID,Chergui MajedORCID,David ChristianORCID,Engel Robin YORCID,Ferrari EugenioORCID,Feurer Thomas,Frankenberger Paul,Gawelda Wojciech M,Gessini Alessandro,Heder Siti,Huang XinchaoORCID,Khatu Nupur N,Knoll Martin,Madsen Anders,Mamyrbayev Talgat,Masciovecchio Claudio,Maznev Alexei A,Milne ChristopherORCID,Mincigrucci Riccardo,Nelson Keith A,Paltanin Ettore,Rossi Giorgio,Scholz Markus,Serrat CarlesORCID,Staub Urs,Szlachetko Jakub,Torre RenatoORCID,Dhanalakshmi-Veeraraj Mano R,Xu Han,Zalden Peter,Svetina Cristian

Abstract

Abstract Transient grating spectroscopy is a specialized application of the four-wave-mixing methodology and constitutes a versatile technique for investigating the dynamics of vibrational, magnetic and electronic degrees of freedom of matter in a background-free fashion. Recent developments in free-electron laser sources have enabled the extension of this technique into the extreme ultraviolet range. Ongoing efforts to expand transient grating spectroscopy into the x-ray regime promise numerous advantages: (1) substantial penetration depths that allow for probing bulk material properties, (2) element specificity via specific core-excited states, and (3) short wavelengths that allow for excitation gratings with higher momentum transfer and improved spatial resolution. In this study, we comprehensively outline the procedures for conducting x-ray transient grating pump/optical probe experiment. The process encompasses the design and alignment of the experimental setup, as well as the subsequent steps involved in data acquisition and analysis. This paper is intended as a comprehensive guide for researchers interested in implementing x-ray transient grating spectroscopy, providing valuable insights into the intricacies of the experimental workflow required for this novel technique. Furthermore, we discuss the potential for extending this methodology to an x-ray pump/x-ray probe scheme, envisioning a future direction that holds promise for enhancing the capabilities and scope of x-ray transient grating spectroscopy, opening new opportunities for studying ultrafast processes with unprecedented temporal and spatial resolutions.

Funder

Basic Energy Sciences

European Research Council

HORIZON EUROPE Marie Sklodowska-Curie Actions

Publisher

IOP Publishing

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