We theoretically study slow collisions of NH₃ molecules with He atoms, where we focus in particular on the observation of scattering resonances. We calculate state-to-state integral and differential cross sections for collision energies ranging from 10⁻⁴ cm⁻¹ to 130 cm⁻¹, using fully converged quantum close-coupling calculations. To describe the interaction between the NH₃ molecules and the He atoms, we present a four-dimensional potential energy surface, based on an accurate fit of 4180 ab initio points. Prior to collision, we consider the ammonia molecules to be in their antisymmetric umbrella state with angular momentum j = 1 and projection k = 1, which is a suitable state for Stark deceleration. We find pronounced shape and Feshbach res...
We have generalized the BOUND and MOLSCAT packages to allow calculations in basis sets where the mon...
We study collisions between neutral, deuterated ammonia molecules (ND_{3}) stored in a 50 cm diamete...
We study collisions between neutral, deuterated ammonia molecules (ND3) stored in a 50 cm diameter s...
We theoretically study slow collisions of NH₃ molecules with He atoms, where we focus in particular ...
We present theoretical studies on the scattering resonances in rotationally inelastic collisions of ...
Contains fulltext : 103707.pdf (publisher's version ) (Open Access
We carry out quantum inelastic scattering calculations of collisions of Rb atoms with inverting NH3 ...
We present detailed calculations on resonances in rotationally and spin-orbit inelastic scattering o...
We present a combined experimental and theoretical study on the rotationally inelastic sca...
The excitation of the low-energy intermolecular modes of ammonia clusters by helium atom scattering ...
In this work we investigate the potential of controlling cold (O(K)−mK) and ultracold (mK-μK) atom-m...
Quantum close-coupling and coupled-states approximation scattering calculations for rotational ener...
Rotationally and vibrationally inelastic collision dynamics of several small molecules are investiga...
International audienceAbstract Ammonia (NH3) is the first polyatomic molecule detected in the inters...
We investigate inelastic collisions of ammonia NH3 and its isotopologue ND3 with rare gas atoms or m...
We have generalized the BOUND and MOLSCAT packages to allow calculations in basis sets where the mon...
We study collisions between neutral, deuterated ammonia molecules (ND_{3}) stored in a 50 cm diamete...
We study collisions between neutral, deuterated ammonia molecules (ND3) stored in a 50 cm diameter s...
We theoretically study slow collisions of NH₃ molecules with He atoms, where we focus in particular ...
We present theoretical studies on the scattering resonances in rotationally inelastic collisions of ...
Contains fulltext : 103707.pdf (publisher's version ) (Open Access
We carry out quantum inelastic scattering calculations of collisions of Rb atoms with inverting NH3 ...
We present detailed calculations on resonances in rotationally and spin-orbit inelastic scattering o...
We present a combined experimental and theoretical study on the rotationally inelastic sca...
The excitation of the low-energy intermolecular modes of ammonia clusters by helium atom scattering ...
In this work we investigate the potential of controlling cold (O(K)−mK) and ultracold (mK-μK) atom-m...
Quantum close-coupling and coupled-states approximation scattering calculations for rotational ener...
Rotationally and vibrationally inelastic collision dynamics of several small molecules are investiga...
International audienceAbstract Ammonia (NH3) is the first polyatomic molecule detected in the inters...
We investigate inelastic collisions of ammonia NH3 and its isotopologue ND3 with rare gas atoms or m...
We have generalized the BOUND and MOLSCAT packages to allow calculations in basis sets where the mon...
We study collisions between neutral, deuterated ammonia molecules (ND_{3}) stored in a 50 cm diamete...
We study collisions between neutral, deuterated ammonia molecules (ND3) stored in a 50 cm diameter s...