Abstract: In this research, the laser field accelerate an electron in vacuum, with non-relativistic motion is carried out. The effects of laser pulse intensity, in x-direction, of 8×1013, 8 × 1014 and 8...Abstract: In this research, the laser field accelerate an electron in vacuum, with non-relativistic motion is carried out. The effects of laser pulse intensity, in x-direction, of 8×1013, 8 × 1014 and 8× 1015 W/cmz on electron position and energy were studied in x and y direction. The results shows that the electron positions is changing with increase of electron energy as the intensity increases with a maximum value of energy 170 keV at 8 ×1015 W/era2. It is also shown that the electron is accelerated within a few values in x-direction.展开更多
文摘Abstract: In this research, the laser field accelerate an electron in vacuum, with non-relativistic motion is carried out. The effects of laser pulse intensity, in x-direction, of 8×1013, 8 × 1014 and 8× 1015 W/cmz on electron position and energy were studied in x and y direction. The results shows that the electron positions is changing with increase of electron energy as the intensity increases with a maximum value of energy 170 keV at 8 ×1015 W/era2. It is also shown that the electron is accelerated within a few values in x-direction.