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Título
Beyond rare gases: Cooling of trapped BN− ions by H2 molecules [Dataset]
Autor(es)
Palabras clave
Astrochemistry
Molecular processes
Methods: numerical
Clasificación UNESCO
2210 Química Física
2501.21 Simulación Numérica
Fecha de publicación
2026
Editor
Universidad de Salamanca
Citación
Gonzalez-Sanchez, L. (2026). Beyond rare gases: Cooling of trapped BN− ions by H2 molecules [Dataset]. Universidad de Salamanca. https://doi.org/10.71636/W7T2-CZ72
Resumen
[EN]Quantum dynamics of collisional cooling of the BN− anion in a cold trap is carried out by using the ortho- and para-H2
molecules as a buffer gas. The calculations are performed using the full four-dimensional interaction potential energy
surface in which both BN− and H2 are treated as vibrationless rigid rotors, computed from ab initio methods and further
accurately fitted using an artificial neural network approach. Relevant state-to-state rotationally inelastic cross sections
are computed from quantum methods and the ensuing inelastic rate coefficients for the temperatures of interest are
obtained. The latter are employed within a modeling of the cooling process at a variety of trap conditions. The results
are discussed in the context of earlier data obtained using the rare gases He and Ar as buffer gases in the same trap. The
effects of having either para- or ortho-H2 as collision partner are analysed.
URI
Tabla de contenidos
The Material includes:
(1) all the original cross section data obtained for rotationally inelastic collisions of BN− with ortho- and para-H2 as projectile,
(2) the corresponding state-to-state rate coefficients obtained from the cross sections,
(3) the relative rotational state populations from the time evolution analysis obtained using the rate coefficients, and
(4) the original routine that produces the NN fit of the initial raw data describing the 4D interaction.
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Data that support the findings of this study












