Collisional absorption of dense fully ionized plasmas in strong high-frequency laser fields is investigated in the non-relativistic case. Quantum statistical methods are used as well as molecular dynamics simulations. In the quantum statistical expressions for the electrical current density and the electron-ion collision frequency–valid for arbitrary field strength–strong correlations are taken into account. In addition, molecular dynamic simulations were performed to calculate the heating of dense plasmas in laser fields. Comparisons with the analytic results for different plasma parameters are given. Isothermal plasmas as well as two-temperature plasmas are considered
Meeting on Radiative Properties of Hot Dense Matter III, LAWRENCE LIVERMORE NATL LAB, LIVERMORE, CAL...
Abstract. The interaction of ultrashort laser pulses with matter is a topic of growing interest. One...
In this work two important models of treating collisional absorption in a laser driven plasma are co...
Based on quantum statistical theory a kinetic equation is presented which is valid for dense plasmas...
The interaction of partially ionized plasmas with an electromagnetic field is investigated using qua...
The research in collisional dissipation processes play an important part in the problem of laser-pla...
Starting from a quantum mechanical approach the transition probability between charged particles is ...
A concise review of the properties of electron distribution functions in a fully ionized plasma in t...
The series of books discusses the physics of laser and matter interaction, fluid dynamics of high-te...
Present ultra high power lasers are capable of producing high energy density (HED) plasmas, in contr...
We re-investigate some classical approaches for collisional absorption of laser radiation in dense p...
This book intended as a guide for scientists and students who have just discovered the field as a ne...
Motivation for the study of hot, dense ($\sim$solid density) plasmas has historically been in connec...
The principal recent developments are that (1) nonlinear steepening of the density profile strongly ...
For dense plasmas produced in shock experiments, the influence of the media on the isolated atomic ...
Meeting on Radiative Properties of Hot Dense Matter III, LAWRENCE LIVERMORE NATL LAB, LIVERMORE, CAL...
Abstract. The interaction of ultrashort laser pulses with matter is a topic of growing interest. One...
In this work two important models of treating collisional absorption in a laser driven plasma are co...
Based on quantum statistical theory a kinetic equation is presented which is valid for dense plasmas...
The interaction of partially ionized plasmas with an electromagnetic field is investigated using qua...
The research in collisional dissipation processes play an important part in the problem of laser-pla...
Starting from a quantum mechanical approach the transition probability between charged particles is ...
A concise review of the properties of electron distribution functions in a fully ionized plasma in t...
The series of books discusses the physics of laser and matter interaction, fluid dynamics of high-te...
Present ultra high power lasers are capable of producing high energy density (HED) plasmas, in contr...
We re-investigate some classical approaches for collisional absorption of laser radiation in dense p...
This book intended as a guide for scientists and students who have just discovered the field as a ne...
Motivation for the study of hot, dense ($\sim$solid density) plasmas has historically been in connec...
The principal recent developments are that (1) nonlinear steepening of the density profile strongly ...
For dense plasmas produced in shock experiments, the influence of the media on the isolated atomic ...
Meeting on Radiative Properties of Hot Dense Matter III, LAWRENCE LIVERMORE NATL LAB, LIVERMORE, CAL...
Abstract. The interaction of ultrashort laser pulses with matter is a topic of growing interest. One...
In this work two important models of treating collisional absorption in a laser driven plasma are co...