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2. Experimentally recorded VMIS data for the Ne photoionization at 90.5 eV FEL photon energy is shown for the case with only FEL (a) and FEL in the presence of an NIR (800 nm) intensity of ~3×1012 W cm−2 (b)
3. Magnified portion of panel (e) of figure 5, highlighting the Coulomb explosion dynamics
4. 400 nm-induced Br2 dissociation dynamics probed by the 90.6 eV FEL pulse
5. Angular dependence of the (high-energy side) second sideband (electron energy ~71.9 eV) shown for different effective optical intensities (i.e
6. Angular dependence of the (high-energy side) second sideband (electron energy ~71.9 eV) shown for different effective optical intensities (i.e
7. 400 nm-induced Br2 dissociation dynamics probed by the 90.6 eV FEL pulse
8. (a)–(c) 2D projections of the momentum distribution of Brn +, n = 1–3 fragments resulting from XUV-only ionization of Br2 at 90.6 eV photon energy and, (d) the corresponding fragment kinetic energy distributions
9. (a) Relevant potential curves of neutral Br2, including the energy curve for the Coulomb explosion channel Br+ + Br+ that can be reached in the dissociative ionization by the FEL pulse
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