International audienceWe study ultracold atom-ion collisions in the presence of an external magnetic field. At low collision energy the field can drastically modify the translational motion of the ion, which follows quantized cyclotron orbits. We present a rigorous theoretical approach for the calculation of quantum scattering amplitudes in these conditions. Collisions in different magnetic field regimes, identified by the size of the cyclotron radius with respect to the range of the interaction potential, are investigated. Our results are important in cases where use of a magnetic field to control the atom-ion collision dynamics is envisioned
Contains fulltext : 91644.pdf (publisher's version ) (Open Access
We review topics of current interest in the physics of electronic, atomic and molecular scattering i...
We investigate the two-dimensional motion of relativistic cold electrons in the presence of ‘strictl...
International audienceWe study atom-ion scattering in the ultracold regime. To this aim, an analytic...
We investigate the quantum effects, in particular the Landau-level quantization, in the scattering o...
Binary collisions between ions and electrons in an external magnetic field are considered in second-...
Two-body scattering constitutes one of the most fundamental processes in various physical systems ra...
International audienceWe develop an analytical model for ultracold atom-ion collisions using the mul...
In this work we investigate the potential of controlling cold (O(K)−mK) and ultracold (mK-μK) atom-m...
The quantum magnetotransport properties of a nondegenerate two-dimensional gas of electrons interact...
The quantum magnetotransport phenomena of surface state electrons on liquid helium interacting with ...
There is great interest within the physics and chemistry communities in the properties of ultracold ...
We investigate the quantum effects, in particular the Landau-level quantization, in the scattering ...
The magnetic field and quantum screening effects on the occurrence scattering time advance for the e...
International audienceWe discover several magnetic Feshbach resonances in collisions of ultracold 39...
Contains fulltext : 91644.pdf (publisher's version ) (Open Access
We review topics of current interest in the physics of electronic, atomic and molecular scattering i...
We investigate the two-dimensional motion of relativistic cold electrons in the presence of ‘strictl...
International audienceWe study atom-ion scattering in the ultracold regime. To this aim, an analytic...
We investigate the quantum effects, in particular the Landau-level quantization, in the scattering o...
Binary collisions between ions and electrons in an external magnetic field are considered in second-...
Two-body scattering constitutes one of the most fundamental processes in various physical systems ra...
International audienceWe develop an analytical model for ultracold atom-ion collisions using the mul...
In this work we investigate the potential of controlling cold (O(K)−mK) and ultracold (mK-μK) atom-m...
The quantum magnetotransport properties of a nondegenerate two-dimensional gas of electrons interact...
The quantum magnetotransport phenomena of surface state electrons on liquid helium interacting with ...
There is great interest within the physics and chemistry communities in the properties of ultracold ...
We investigate the quantum effects, in particular the Landau-level quantization, in the scattering ...
The magnetic field and quantum screening effects on the occurrence scattering time advance for the e...
International audienceWe discover several magnetic Feshbach resonances in collisions of ultracold 39...
Contains fulltext : 91644.pdf (publisher's version ) (Open Access
We review topics of current interest in the physics of electronic, atomic and molecular scattering i...
We investigate the two-dimensional motion of relativistic cold electrons in the presence of ‘strictl...