We propose a joint experimental and theoretical approach to measure the self-diffusion in a lasercooled trapped ion cloud where part of the ions are shelved in a long-lived dark state. The role of the self-diffusion coefficient in the spatial organisation of the ions is deciphered, following from the good agreement between the experimental observations and the theoretical predictions. This comparison furthermore allows to deduce the temperature of the sample. Protocols to measure the self-diffusion coefficient are discussed, in regard with the control that can be reached on the relevant time scales through the dressing of the atomic levels by laser fields
Ultracold cold molecular ions promise new directions in various studies of fundamental physics, such...
It is shown that, under the influence of a monochromatic HF electric field (laser beam), both the el...
Self-diffusion through dense classical one-component plasmas in a uniform magnetic field is studied ...
We present a study of the collisional relaxation of ion velocities in a strongly coupled, ultracold ...
This paper aims at studying the reliability of a few frequently raised, but not proven, arguments fo...
The heat conductivity of a laser-created plasma heated by inverse bremsstrahlung absorption is inves...
A study of ion dynamics in strongly coupled ultracold neutral plasma (UCNP) is presented here. Plasm...
The new findings for dynamic process of inward diffusion in the magnetospheric plasma are reported o...
We study spatial self-organisation and dynamical phase-space compression of a dilute cold gas of las...
The space-time evolution of an initial step-like plasma density variation is studied. We give partic...
The longitudinal self-diffusion coefficient for a magnetized plasma with a small plasma parameter is...
We investigate the evolution of a system of two-level atoms interacting with two counterpropagating ...
It was suggested in the literature that the self-diffusion coefficient of simple fluids can be appro...
International audienceThe autocorrelation function for the electric field at an impurity ion in a pl...
We report measurements of test particle diffusion in velocity space. Test particles are created and ...
Ultracold cold molecular ions promise new directions in various studies of fundamental physics, such...
It is shown that, under the influence of a monochromatic HF electric field (laser beam), both the el...
Self-diffusion through dense classical one-component plasmas in a uniform magnetic field is studied ...
We present a study of the collisional relaxation of ion velocities in a strongly coupled, ultracold ...
This paper aims at studying the reliability of a few frequently raised, but not proven, arguments fo...
The heat conductivity of a laser-created plasma heated by inverse bremsstrahlung absorption is inves...
A study of ion dynamics in strongly coupled ultracold neutral plasma (UCNP) is presented here. Plasm...
The new findings for dynamic process of inward diffusion in the magnetospheric plasma are reported o...
We study spatial self-organisation and dynamical phase-space compression of a dilute cold gas of las...
The space-time evolution of an initial step-like plasma density variation is studied. We give partic...
The longitudinal self-diffusion coefficient for a magnetized plasma with a small plasma parameter is...
We investigate the evolution of a system of two-level atoms interacting with two counterpropagating ...
It was suggested in the literature that the self-diffusion coefficient of simple fluids can be appro...
International audienceThe autocorrelation function for the electric field at an impurity ion in a pl...
We report measurements of test particle diffusion in velocity space. Test particles are created and ...
Ultracold cold molecular ions promise new directions in various studies of fundamental physics, such...
It is shown that, under the influence of a monochromatic HF electric field (laser beam), both the el...
Self-diffusion through dense classical one-component plasmas in a uniform magnetic field is studied ...