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<dc:creator>González Sánchez, Lola</dc:creator>
<dc:creator>Wester, Roland</dc:creator>
<dc:creator>Gianturco, Franco A.</dc:creator>
<dc:date>2018</dc:date>
<dc:description>[EN]Using the ab initio computed potential energy surface for the electronic interaction of the MgH+(1) ion with the He(1S) atom, we calculate the relevant state-changing rotationally inelastic collision cross sections from a quantum treatment of the multichannel scattering problem. We focus on the quantum dynamics at the translationally low energies for the present partners discussed in earlier, cold ion trap experiments (see below), which we wish to model in detail. The corresponding state-changing rates computed between the lower rotational states of the molecular ion are employed to describe the time-evolution kinetics followed by recent experiments on Coulomb-crystallized MgH+(1), where the ions are rotationally cooled by micromotion tuning&#xd;
after being uploaded into the trap of He as a buffer gas. The present computational modeling of the final ion rotational temperatures in the experiments turns out to agree very well with the observations and points at a fast equilibration between rotational and thermal temperatures of the ions.</dc:description>
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<dc:identifier>http://hdl.handle.net/10366/146579</dc:identifier>
<dc:language>eng</dc:language>
<dc:publisher>Physical Review A</dc:publisher>
<dc:subject>2210 Química Física</dc:subject>
<dc:subject>2210.31 Termoquímica</dc:subject>
<dc:title>Collisional cooling of internal rotation inMgH+ions trapped with He atoms: Quantum modeling meets experiments in Coulomb crystals</dc:title>
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