A resistivity model for non-crystalline, solid-density carbon and hydrocarbons is presented for such materials heated by short-pulse, ultra-intense lasers. Electron-impact excitation of C atoms and ions was included in this model,and calculation of resistivity curves with and without accounting for excitations indicates that excitations contribute >50% of the resistivity in the 3–20 eV range. This implies that electron-impact excitations make a similar contribution to electron-ion scattering, and thus models not accounting for electron-impact excitation may underestimate the resistivity of dense plasmas in this temperature range
textHigh intensity lasers interacting with an overdense target can accelerate high energy (“hot”) el...
The framework of this PhD thesis is the inertial confinement fusion for energy production, in the co...
We present a consistent calculation of electrical conductivity of dense matter from the solid to the...
A resistivity model for non-crystalline, solid-density carbon and hydrocarbons is presented for such...
The influence of low temperature (eV to tens-of-eV) electrical resistivity on the onset of the filam...
The role of low-temperature electrical resistivity in defining the transport properties of mega-Ampe...
We report experimental results on relativistic electron beam (REB) transport in a set of cold and sh...
Collimated transport of ultrahigh intensity electron current was observed in cold and in laser-shock...
It is now possible to measure the electrical resistivity, or alternatively the electron collision fr...
The accuracy with which the Thomas–Fermi (TF) model can provide electronic specific heat capacities ...
This thesis reports on experimental investigations of relativistic (`fast') electron transport in so...
Since the observation of the first brown dwarf in 1995, numerous studies have led to a better unders...
WOS:000558842900015In this study, we have investigated carbon ions, fast electrons and gamma-ray ene...
We present experimental studies on ion acceleration from diamond-like carbon (DLC) foils irradiated ...
Anomalous resistivity for hot electrons passing through a dense core plasma is studied for fast igni...
textHigh intensity lasers interacting with an overdense target can accelerate high energy (“hot”) el...
The framework of this PhD thesis is the inertial confinement fusion for energy production, in the co...
We present a consistent calculation of electrical conductivity of dense matter from the solid to the...
A resistivity model for non-crystalline, solid-density carbon and hydrocarbons is presented for such...
The influence of low temperature (eV to tens-of-eV) electrical resistivity on the onset of the filam...
The role of low-temperature electrical resistivity in defining the transport properties of mega-Ampe...
We report experimental results on relativistic electron beam (REB) transport in a set of cold and sh...
Collimated transport of ultrahigh intensity electron current was observed in cold and in laser-shock...
It is now possible to measure the electrical resistivity, or alternatively the electron collision fr...
The accuracy with which the Thomas–Fermi (TF) model can provide electronic specific heat capacities ...
This thesis reports on experimental investigations of relativistic (`fast') electron transport in so...
Since the observation of the first brown dwarf in 1995, numerous studies have led to a better unders...
WOS:000558842900015In this study, we have investigated carbon ions, fast electrons and gamma-ray ene...
We present experimental studies on ion acceleration from diamond-like carbon (DLC) foils irradiated ...
Anomalous resistivity for hot electrons passing through a dense core plasma is studied for fast igni...
textHigh intensity lasers interacting with an overdense target can accelerate high energy (“hot”) el...
The framework of this PhD thesis is the inertial confinement fusion for energy production, in the co...
We present a consistent calculation of electrical conductivity of dense matter from the solid to the...