activity
20122023
most citedMaking the best of mixed-field orientation of polar molecules: A recipe for achieving adiabatic dynamics in an electrostatic field combined with laser pulses

63 citations · 83 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph2023

Full Control of non-symmetric molecules orientation using weak and moderate electric fields

Rosario González-Férez, Juan J. Omiste

We investigate the full control over the orientation of a non-symmetric molecule by using moderate and weak electric fields. Quantum Optimal Control techniques allow us to orient a…

quant-ph2023

Revisiting Quantum Optimal Control Theory: New Insights for the Canonical Solutions

Katherine Castro, Ignacio R. Solá, Juan J. Omiste

In this study, we present a revision of the Quantum Optimal Control Theory (QOCT) originally proposed by Rabitz et al (Phys. Rev. A 37, 49504964 (1988)), which has broad applicatio…

physics.chem-ph20169 cited

Torsional and rotational coupling in non-rigid molecules

Juan J. Omiste, Lars Bojer Madsen

We analyze theoretically the interplay between the torsional and the rotational motion of an aligned biphenyl-like molecule. To do so, we consider a transition between two electron…

physics.chem-ph201611 cited

Theoretical description of mixed-field orientation of asymmetric top molecules: a time-dependent study

Juan J. Omiste, Rosario González-Férez

We present a theoretical study of the mixed-field-orientation of asymmetric top molecules in tilted static electric field and non-resonant linearly polarized laser pulse by solving…

physics.chem-ph201263 cited

Making the best of mixed-field orientation of polar molecules: A recipe for achieving adiabatic dynamics in an electrostatic field combined with laser pulses

Jens H. Nielsen, Henrik Stapelfeldt, Jochen Küpper +3

We have experimentally and theoretically investigated the mixed-field orientation of rotational-state-selected OCS molecules and we achieve strong degrees of alignment and orientat…