K-shell photoionization of ground-state Li-like boron ions [B$^{2+}$]: Experiment and Theory
A. M\"uller, S. Schippers, R. A. Phaneu, S. W. J. Scully, A. Aguilar,, C. Cisneros, M. F. Gharaibeh, A. S. Schlachter, B. M. McLaughlin

TL;DR
This study combines high-resolution experimental measurements and theoretical calculations to analyze K-shell photoionization cross sections and resonance properties of Li-like boron ions, providing precise data and validation of theoretical models.
Contribution
The paper presents the first high-resolution experimental data on B$^{2+}$ K-shell photoionization and compares it with advanced R-matrix calculations, enhancing understanding of atomic processes.
Findings
Measured absolute cross sections with high resolution.
Determined natural linewidths of key resonances.
Validated theoretical models with experimental data.
Abstract
Absolute cross sections for the K-shell photoionization of ground-state Li-like boron [B(1s2s S)] ions were measured by employing the ion-photon merged-beams technique at the Advanced Light Source synchrotron radiation facility. The energy ranges 197.5--200.5 eV, 201.9--202.1 eV of the [1s(2s\,2p)P]P and [1s(2s\,2p)P] P resonances, respectively, were investigated using resolving powers of up to 17\,600. The energy range of the experiments was extended to about 238.2 eV yielding energies of the most prominent [1s(2\,n)]P resonances with an absolute accuracy of the order of 130 ppm. The natural linewidths of the [1s(2s\,2p)P] P and [1s(2s\,2p)P] P resonances were measured to be meV and meV, respectively, which compare favourably with theoretical…
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