Ionization Energy of Rb$_2$ by electric field-ionization of molecular Rydberg states
Manuel Alejandro Lefr\'an Torres, David Rodr\'iguez Fern\'andez, Jaime Javier Borges M\'arquez, Marcos Roberto Cardoso, Luis Gustavo Marcassa, Amrendra Pandey, Romain Vexiau, Olivier Dulieu, Nadia Bouloufa-Maafa

TL;DR
This study precisely measures the ionization energy of Rb$_2$ molecules using electric field ionization of Rydberg states, providing new experimental data and theoretical insights into molecular ionization processes.
Contribution
The paper presents a new, more accurate measurement of Rb$_2$ ionization energy and dissociation energy, and offers a theoretical model for the ionization spectrum structure.
Findings
Ionization energy of Rb$_2$ is 31497.3 ± 0.6 cm$^{-1}$.
Dissociation energy of Rb$_2^+$ is 6158.2 ± 0.6 cm$^{-1}$.
Measured ionization energy is 149.3 cm$^{-1}$ higher than previous experimental value.
Abstract
We report the measurement of the ionization energy of the molecule through resonantly enhanced 2-photon ionization in a supersonic beam. The first photon excites the transition, while the second photon wavenumber is scanned over the 16720 cm-16750 cm range, thus yielding a structured spectrum of Rb ions extracted by an electric field and recorded by mass spectrometry. We modeled the onset of the ionization signal as a function of the electric field strength between and , leading to the Rb ionization energy cm, and to the dissociation energy of the Rb ground state cm. Our measured value is found to be cm larger than the one reported in the experiment by Bellos et al. [Phys. Rev. A 87,…
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