For controllable generation of an isolated attosecond relativistic electron bunch [relativistic electron mirror (REM)] with nearly solid-state density, we propose using a solid nanofilm illuminated normally by an ultraintense femtosecond laser pulse having a sharp rising edge. With two-dimensional (2D) particle-in-cell (PIC) simulations, we show that, in spite of Coulomb forces, all of the electrons in the laser spot can be accelerated synchronously, and the REM keeps its surface charge density during evolution. We also developed a self-consistent 1D theory, which takes into account Coulomb forces, radiation of the electrons, and laser amplitude depletion. This theory allows us to predict the REM parameters and shows a good agreement with t...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
Attosecond (10 -15 s) electron beams will have some important applications in physics, chemistry, ma...
Ultrahigh-intensity laser-plasma physics provides unique light and particle beams as well as novel p...
Ultrahigh-intensity laser-plasma physics provides unique light and particle beams as well as novel p...
Ultrahigh-intensity laser-plasma physics provides unique light and particle beams as well as novel p...
The bunching of an electron beam by an ultra-relativistic laser pulse in vacuum is considered. The o...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
We investigate dense relativistic electron mirror generation from a micro-droplet driven by circular...
We investigate dense relativistic electron mirror generation from a micro-droplet driven by circular...
We report on the realistic scheme of intense X-rays and γ-radiation generation in a laser interactio...
We investigate dense relativistic electron mirror generation from a micro-droplet driven by circular...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
Attosecond (10 -15 s) electron beams will have some important applications in physics, chemistry, ma...
Ultrahigh-intensity laser-plasma physics provides unique light and particle beams as well as novel p...
Ultrahigh-intensity laser-plasma physics provides unique light and particle beams as well as novel p...
Ultrahigh-intensity laser-plasma physics provides unique light and particle beams as well as novel p...
The bunching of an electron beam by an ultra-relativistic laser pulse in vacuum is considered. The o...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
We investigate dense relativistic electron mirror generation from a micro-droplet driven by circular...
We investigate dense relativistic electron mirror generation from a micro-droplet driven by circular...
We report on the realistic scheme of intense X-rays and γ-radiation generation in a laser interactio...
We investigate dense relativistic electron mirror generation from a micro-droplet driven by circular...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...
The interaction of light with nanometer-sized solids provides the means of focusing optical radiatio...