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20152021
most citedControlling the nature of a charged impurity in a bath of Feshbach dimers

21 citations · 35 across the 8 of their papers we have counts for

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physics.atom-ph2021

Laser-assisted binding of ultracold polar molecules with Rydberg atoms in the van der Waals regime

Vanessa Olaya, Jesús Pérez-Ríos, Felipe Herrera

We study ultracold long-range collisions of heteronuclear alkali-metal dimers with a reservoir gas of alkali-metal Rydberg atoms in a two-photon laser excitation scheme. In a low d…

physics.atom-ph2021

Electric field dissociation of weakly bound molecular ions

Jesús Pérez-Ríos

We present a full quantal study on the dissociation of a weakly bound molecular ion in the presence of an external time-dependent electric field. We focus on the dissociation dynam…

physics.atom-ph202013 cited

Rydberg atom-ion collisions in cold environments

Henrik Hirzler, Jesús Pérez-Ríos

Low-energy collisions of Rydberg atom-ion systems are investigated theoretically. We present the parameter space associated with suitable approaches for the dynamics of Rydberg ato…

physics.atom-ph202021 cited

Controlling the nature of a charged impurity in a bath of Feshbach dimers

Henrik Hirzler, Eleanor Trimby, Rianne S. Lous +3

We theoretically study the dynamics of a trapped ion that is immersed in an ultracold gas of weakly bound atomic dimers created by a Feshbach resonance. Using quasi-classical simul…

physics.atom-ph2019

coefficients for interacting Rydberg atoms and alkali-metal dimers

Vanessa Olaya, Jesús Pérez-Ríos, Felipe Herrera

We study the van der Waals interaction between Rydberg alkali-metal atoms with fine structure (; ) and heteronuclear alkali-metal dimers in the ground rovibrationa…

physics.atom-ph2018

Universal temperature dependence of the ion-neutral-neutral three-body recombination rate

Jesús Pérez-Ríos, Chris H. Greene

A classical approach based on hyperspherical coordinates is used to derive a first principle formulation of the the ion-neutral-neutral three-body recombination rate, A + A + A…