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This work was funded by the Max Planck Society, the European Research Council (ERC) under the European Union's Horizon 2020 research and innovation program (Grant Agreement Number ERC-2015-CoG-682843), and partially by the Deutsche Forschungsgemeinschaft (DFG) - Projektnummer 182087777 - SFB 951. F.C. acknowledges funding by the DFG ���Projektnummer 443988403. H.S. acknowledges support by the Swiss National Science Foundation under Grant No. P2SKP2184100. M.Z. acknowledges financial support from the Research Unit of Nanostructured Materials Systems (RUNMS) and program META���I���AKT��P. Y.Q. acknowledges support by the Sino-German (CSC-DAAD) Postdoc Scholarship Program (Grant No. 57343410). Y.W.W acknowledges funding from the DFG within the Emmy Noether program under Grant No. RE 3977/1.
Femtosecond electron diffuse scattering data of black phosphorus measured at the Fritz Haber Institute in Berlin. The dataset contains an experiment at 100 K (measurement _1.h5) .
femtosecond electron diffraction, first-principles calculations, layered materials, black phosphorus, electron-phonon coupling
femtosecond electron diffraction, first-principles calculations, layered materials, black phosphorus, electron-phonon coupling
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