An accurate description of the ionization potential depression of ions in plasmas due to their interaction with the environment is a fundamental problem in plasma physics, playing a key role in determining the ionization balance, charge state distribution, opacity and plasma equation of state. Here we present a method to study the structure and position of the continuum of highly ionized dense plasmas using finite-temperature density functional theory in combination with excited-state projector augmented-wave potentials. The method is applied to aluminium plasmas created by intense X-ray irradiation, and shows excellent agreement with recently obtained experimental results. We find that the continuum lowering for ions in dense plasmas at in...
International audienceThe radiative properties of an emitter surrounded by a plasma, are modified th...
Nuclei interacting with electrons in dense plasmas acquire electronic bound states, modify continuum...
High energy density (HED) matter exists extensively in the Universe, and it can be created with extr...
An accurate description of the ionization potential depression of ions in plasmas due to their inter...
The modelling of dense plasmas using finite-temperature density functional theory has proven very su...
Nuclei interacting with electrons in dense plasmas acquire electronic bound states, modify continuum...
We present experimental observations of Kβ emission from highly charged Mg ions at solid density, dr...
The aim of this work is to improve the treatment of density effects in non local thermodynamic equil...
In warm dense matter (WDM) and dense plasma physics, Density Functional Theory (DFT) has become a st...
Multiple-charge and atomic particles in dense plasma for cases of high temperatures and complete deg...
We present a first principles theory of the ionization equilibrium, thermodynamics, and linear trans...
Ab initio molecular dynamics calculations are adapted to treat dense plasmas for temperatures exceed...
International audienceThe ionization potential of an ion embedded in a plasma, lowered due to the wh...
An accurate description of the screening potential induced by a hot, dense plasma is a fundamental p...
The charged environment within a dense plasma leads to the phenomenon of ionization-potential depres...
International audienceThe radiative properties of an emitter surrounded by a plasma, are modified th...
Nuclei interacting with electrons in dense plasmas acquire electronic bound states, modify continuum...
High energy density (HED) matter exists extensively in the Universe, and it can be created with extr...
An accurate description of the ionization potential depression of ions in plasmas due to their inter...
The modelling of dense plasmas using finite-temperature density functional theory has proven very su...
Nuclei interacting with electrons in dense plasmas acquire electronic bound states, modify continuum...
We present experimental observations of Kβ emission from highly charged Mg ions at solid density, dr...
The aim of this work is to improve the treatment of density effects in non local thermodynamic equil...
In warm dense matter (WDM) and dense plasma physics, Density Functional Theory (DFT) has become a st...
Multiple-charge and atomic particles in dense plasma for cases of high temperatures and complete deg...
We present a first principles theory of the ionization equilibrium, thermodynamics, and linear trans...
Ab initio molecular dynamics calculations are adapted to treat dense plasmas for temperatures exceed...
International audienceThe ionization potential of an ion embedded in a plasma, lowered due to the wh...
An accurate description of the screening potential induced by a hot, dense plasma is a fundamental p...
The charged environment within a dense plasma leads to the phenomenon of ionization-potential depres...
International audienceThe radiative properties of an emitter surrounded by a plasma, are modified th...
Nuclei interacting with electrons in dense plasmas acquire electronic bound states, modify continuum...
High energy density (HED) matter exists extensively in the Universe, and it can be created with extr...