We present a study of the collisional relaxation of ion velocities in a strongly coupled, ultracold neutral plasma on short time scales compared to the inverse collision rate. The measured average velocity of a tagged population of ions is shown to be equivalent to the ion-velocity autocorrelation function. We thus gain access to fundamental aspects of the single-particle dynamics in strongly coupled plasmas and to the ion self-diffusion constant under conditions where experimental measurements have been lacking. Nonexponential decay towards equilibrium of the average velocity heralds non-Markovian dynamics that are not predicted by traditional descriptions of weakly coupled plasmas. This demonstrates the utility of ultracold neutral plasma...
An attempt is made to simulate non-equilibrium strongly coupled plasmas. Monte-Carlo method is used ...
First in Chapter 2, we discuss the collisional relaxation of a strongly magnetized pure ion plasma t...
National Science Foundations of China [11175227, 11304329]; Shanghai Supercomputer Center of ChinaTh...
We present a study of the collisional relaxation of ion velocities in a strongly coupled, ultracold ...
We propose a joint experimental and theoretical approach to measure the self-diffusion in a lasercoo...
The space-time evolution of an initial step-like plasma density variation is studied. We give partic...
The direct measurement of the velocity space transport of ions in a plasma is reported. Measured dif...
We investigate the strongly correlated ion dynamics and the degree of coupling achievable in the evo...
International audienceThe autocorrelation function for the electric field at an impurity ion in a pl...
International audienceThe autocorrelation function for the velocity and for the electric microfield ...
We describe a hybrid molecular dynamics approach for the description of ultracold neutral plasmas, b...
A study of ion dynamics in strongly coupled ultracold neutral plasma (UCNP) is presented here. Plasm...
The energy relaxation of two types of fully ionized plasma systems are determined with the solution ...
The self-diffusion, shear viscosity and thermal conductivity coefficients of a strongly coupled one-...
A laser-driven experiment investigating electron-ion equilibration in strongly coupled plasma was pe...
An attempt is made to simulate non-equilibrium strongly coupled plasmas. Monte-Carlo method is used ...
First in Chapter 2, we discuss the collisional relaxation of a strongly magnetized pure ion plasma t...
National Science Foundations of China [11175227, 11304329]; Shanghai Supercomputer Center of ChinaTh...
We present a study of the collisional relaxation of ion velocities in a strongly coupled, ultracold ...
We propose a joint experimental and theoretical approach to measure the self-diffusion in a lasercoo...
The space-time evolution of an initial step-like plasma density variation is studied. We give partic...
The direct measurement of the velocity space transport of ions in a plasma is reported. Measured dif...
We investigate the strongly correlated ion dynamics and the degree of coupling achievable in the evo...
International audienceThe autocorrelation function for the electric field at an impurity ion in a pl...
International audienceThe autocorrelation function for the velocity and for the electric microfield ...
We describe a hybrid molecular dynamics approach for the description of ultracold neutral plasmas, b...
A study of ion dynamics in strongly coupled ultracold neutral plasma (UCNP) is presented here. Plasm...
The energy relaxation of two types of fully ionized plasma systems are determined with the solution ...
The self-diffusion, shear viscosity and thermal conductivity coefficients of a strongly coupled one-...
A laser-driven experiment investigating electron-ion equilibration in strongly coupled plasma was pe...
An attempt is made to simulate non-equilibrium strongly coupled plasmas. Monte-Carlo method is used ...
First in Chapter 2, we discuss the collisional relaxation of a strongly magnetized pure ion plasma t...
National Science Foundations of China [11175227, 11304329]; Shanghai Supercomputer Center of ChinaTh...