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Abstract Inner-shell photoelectron spectroscopy provides an element-specific probe of molecular structure, as core-electron binding energies are sensitive to the chemical environment. Short-wavelength femtosecond light sources, such as Free-Electron Lasers (FELs), even enable time-resolved site-specific investigations of molecular photochemistry. Here, we study the ultraviolet photodissociation of the prototypical chiral molecule 1-iodo-2-methylbutane, probed by extreme-ultraviolet (XUV) pulses from the Free-electron LASer in Hamburg (FLASH) through the ultrafast evolution of the iodine 4d binding energy. Methodologically, we employ electron-ion partial covariance imaging as a technique to isolate otherwise elusive features in a two-dimensional photoelectron spectrum arising from different photofragmentation pathways. The experimental and theoretical results for the time-resolved electron spectra of the 4d 3/2 and 4d 5/2 atomic and molecular levels that are disentangled by this method provide a key step towards studying structural and chemical changes from a specific spectator site.more » « less
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Rebholz, Marc; Ding, Thomas; Despré, Victor; Aufleger, Lennart; Hartmann, Maximilian; Meyer, Kristina; Stooß, Veit; Magunia, Alexander; Wachs, David; Birk, Paul; et al (, Physical Review X)null (Ed.)
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Rebholz, Marc; Ding, Thomas; Aufleger, Lennart; Hartmann, Maximilian; Meyer, Kristina; Stooß, Veit; Magunia, Alexander; Wachs, David; Birk, Paul; Mi, Yonghao; et al (, The Journal of Physical Chemistry A)
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Gabalski, Ian; Allum, Felix; Seidu, Issaka; Britton, Mathew; Brenner, Günter; Bromberger, Hubertus; Brouard, Mark; Bucksbaum, Philip H.; Burt, Michael; Cryan, James P.; et al (, The Journal of Physical Chemistry Letters)
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