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  An open-source, end-to-end workflow for multidimensional photoemission spectroscopy

Xian, R. P., Acremann, Y., Agustsson, S. Y., Dendzik, M. R., Bühlmann, K., Curcio, D., et al. (2020). An open-source, end-to-end workflow for multidimensional photoemission spectroscopy. Scientific Data, 7: 442. doi:10.1038/s41597-020-00769-8.

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 Creators:
Xian, R. Patrick1, Author           
Acremann, Yves2, Author
Agustsson, Steinn Ymir3, Author
Dendzik, Maciej Ramon1, Author           
Bühlmann, Kevin2, Author
Curcio, Davide4, Author
Kutnyakhov, Dmytro5, Author
Pressacco, Frederico5, 6, Author
Heber, Michael5, Author
Dong, Shuo1, Author           
Pincelli, Tommaso1, Author           
Demsar, Jure3, Author
Wurth, Wilfried5, 6, Author
Hofmann, Philip4, Author
Wolf, Martin1, Author           
Scheidgen, Markus7, Author
Rettig, Laurenz1, Author           
Ernstorfer, Ralph1, Author           
Affiliations:
1Physical Chemistry, Fritz Haber Institute, Max Planck Society, ou_634546              
2Laboratory for Solid State Physics, ETH Zurich, 8093, Zurich, Switzerland, ou_persistent22              
3Institute of Physics, University of Mainz, 55128, Mainz, Germany, ou_persistent22              
4Department of Physics and Astronomy, Interdisciplinary Nanoscience Center (iNANO), Aarhus University, 8000, Aarhus C, Denmark, ou_persistent22              
5DESY Photon Science, Hamburg, Germany, ou_persistent22              
6Department of Physics, University of Hamburg, Hamburg, Germany, ou_persistent22              
7Department of Physics, Humboldt University of Berlin, 12489, Berlin, Germany, ou_persistent22              

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Free keywords: Physics, Data Analysis, Statistics and Probability, physics.data-an, Condensed Matter, Materials Science, cond-mat.mtrl-sci
 Abstract: Characterization of the electronic band structure of solid state materials is routinely performed using photoemission spectroscopy. Recent advancements in short-wavelength light sources and electron detectors give rise to multidimensional photoemission spectroscopy, allowing parallel measurements of the electron spectral function simultaneously in energy, two momentum components and additional physical parameters with single-event detection capability. Efficient processing of the photoelectron event streams at a rate of up to tens of megabytes per second will enable rapid band mapping for materials characterization. We describe an open-source workflow that allows user interaction with billion-count single-electron events in photoemission band mapping experiments, compatible with beamlines at 3rd and 4rd generation light sources and table-top laser-based setups. The workflow offers an end-to-end recipe from distributed operations on single-event data to structured formats for downstream scientific tasks and storage to materials science database integration. Both the workflow and processed data can be archived for reuse, providing the infrastructure for documenting the provenance and lineage of photoemission data for future high-throughput experiments.

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Language(s): eng - English
 Dates: 2019-09-172020-08-242020-11-132020-12-17
 Publication Status: Published online
 Pages: 11
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Degree: -

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Project name : FLATLAND - Electron-lattice-spin correlations and many-body phenomena in 2D semiconductors and related heterostructures
Grant ID : 682843
Funding program : Horizon 2020 (H2020)
Funding organization : European Commission (EC)

Source 1

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Title: Scientific Data
  Abbreviation : Sci. Data
Source Genre: Journal
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Publ. Info: London, United Kingdom : Nature Publishing Group
Pages: 11 Volume / Issue: 7 Sequence Number: 442 Start / End Page: - Identifier: ISSN: 2052-4463
CoNE: https://pure.mpg.de/cone/journals/resource/2052-4463