Single-shot time-of-flight spectra for Coulomb explosion of N2 and I2 molecules have been recorded at the Free Electron LASer in Hamburg (FLASH) and have been analysed using a partial covariance mapping technique. The partial covariance analysis unravels a detailed picture of all significant Coulomb explosion pathways, extending up to the N4+–N5+ channel for nitrogen and up to the I8+–I9+ channel for iodine. The observation of the latter channel is unexpected if only sequential ionization processes from the ground state ions are considered. The maximum kinetic energy release extracted from the covariance maps for each dissociation channel shows that Coulomb explosion of nitrogen molecules proceeds much faster than that of the iodine. The N2...
<p><b>Table 1.</b> Maximum kinetic energy (KE) per fragment for N<sub>2</sub> extracted from figure ...
We have systematically studied Coulomb explosion of nitrogen and oxygen molecules in intense 8 and 2...
<p><strong>Figure 7.</strong> Extraction of the charge state distributions of N<em><sup>n</sup></em>...
Single-shot time-of-flight spectra for Coulomb explosion of N2 and I2 molecules have been recorded a...
<p><strong>Figure 1.</strong> Sketch of the experimental setup. XUV pulses are focused on a molecula...
Single-shot time-of-flight spectra for Coulomb explosion of N2 and I2 molecules have been recorded a...
<p><strong>Figure 5.</strong> A partial covariance map of I<sub>2</sub> fragmentation constructed fr...
<p><b>Table 3.</b> Cross sections at 91 eV photon energy and ionization potentials of N atoms and io...
<p><strong>Figure 10.</strong> Maximum kinetic energy release per fragment plotted as a function of ...
<p><strong>Figure 2.</strong> TOF spectrum of ions from Coulomb explosion of N<sub>2</sub>, averaged...
<p><strong>Figure 8.</strong> Comparison of the experimental and simulated covariance maps. (a) Expe...
<p><strong>Figure 9.</strong> Comparison of charge state-selected momentum distributions extracted f...
<p><b>Table 2.</b> Maximum kinetic energy (KE) per fragment for I<sub>2</sub> extracted from figure ...
<p><strong>Figure 4.</strong> Steps in resolving the ion momentum correlations in Coulomb explosion ...
<p><strong>Figure 11.</strong> Simulated variation in the maximum fragment kinetic energy of N<sub>2...
<p><b>Table 1.</b> Maximum kinetic energy (KE) per fragment for N<sub>2</sub> extracted from figure ...
We have systematically studied Coulomb explosion of nitrogen and oxygen molecules in intense 8 and 2...
<p><strong>Figure 7.</strong> Extraction of the charge state distributions of N<em><sup>n</sup></em>...
Single-shot time-of-flight spectra for Coulomb explosion of N2 and I2 molecules have been recorded a...
<p><strong>Figure 1.</strong> Sketch of the experimental setup. XUV pulses are focused on a molecula...
Single-shot time-of-flight spectra for Coulomb explosion of N2 and I2 molecules have been recorded a...
<p><strong>Figure 5.</strong> A partial covariance map of I<sub>2</sub> fragmentation constructed fr...
<p><b>Table 3.</b> Cross sections at 91 eV photon energy and ionization potentials of N atoms and io...
<p><strong>Figure 10.</strong> Maximum kinetic energy release per fragment plotted as a function of ...
<p><strong>Figure 2.</strong> TOF spectrum of ions from Coulomb explosion of N<sub>2</sub>, averaged...
<p><strong>Figure 8.</strong> Comparison of the experimental and simulated covariance maps. (a) Expe...
<p><strong>Figure 9.</strong> Comparison of charge state-selected momentum distributions extracted f...
<p><b>Table 2.</b> Maximum kinetic energy (KE) per fragment for I<sub>2</sub> extracted from figure ...
<p><strong>Figure 4.</strong> Steps in resolving the ion momentum correlations in Coulomb explosion ...
<p><strong>Figure 11.</strong> Simulated variation in the maximum fragment kinetic energy of N<sub>2...
<p><b>Table 1.</b> Maximum kinetic energy (KE) per fragment for N<sub>2</sub> extracted from figure ...
We have systematically studied Coulomb explosion of nitrogen and oxygen molecules in intense 8 and 2...
<p><strong>Figure 7.</strong> Extraction of the charge state distributions of N<em><sup>n</sup></em>...