High-energy radiation can be generated by colliding a relativistic electron bunch with a high-intensity laser pulse—a process known as Thomson scattering. In the nonlinear regime the emitted radiation contains harmonics. For a laser pulse whose length is comparable to its wave-length, the carrier envelope phase changes the behavior of the motion of the electron and therefore the radiation spectrum. Here we show theoretically and numerically the dependency of the spectrum on the intensity of the laser and the carrier envelope phase. Additionally, we also discuss what experimental parameters are required to measure the effects for a beamed pulse
A method is proposed to determine the carrier-envelope phase (CEP) of a relativistic few-cycle laser...
Linear Thomson scattering of relativistic electrons with few-cycle laser pulses is theoretically ana...
Our paper concerns the scattering of intense laser radiation on free electrons and it is focused on...
Thomson scattering is the name given to the scattering of light by electrons. This interaction is ub...
Based on the classical electromagnetic radiation theory, the spectral characteristics of 90?? linear...
The effects of super-cycle (or sub-cycle) and super-Gaussian laser pulse shapes on the forward Thoms...
We study the effects of laser pulse focusing on the spectral properties of Thomson scattered radiati...
Effects of nonlinearity in Thomson scattering of a high intensity laser pulse from electrons are ana...
International audienceAs an electron oscillates in an intense laser field, it acquires a highly nonl...
The impact of the carrier-envelope phase (CEP) of an intense multi-cycle laser pulse on the radiatio...
Relativistic, nonlinear Thomson scattering by an electron of an intense laser field has been investi...
The Thomson scattering spectra of an electron by an ultraintense laser field are computed. It is fou...
It has been shown that in the scattered radiation, generated by an ultrashort laser pulse impinging ...
We have investigated the radiation property of a relativistic electron counter propagating in an int...
A method is proposed to determine the carrier-envelope phase (CEP) of a relativistic few-cycle laser...
A method is proposed to determine the carrier-envelope phase (CEP) of a relativistic few-cycle laser...
Linear Thomson scattering of relativistic electrons with few-cycle laser pulses is theoretically ana...
Our paper concerns the scattering of intense laser radiation on free electrons and it is focused on...
Thomson scattering is the name given to the scattering of light by electrons. This interaction is ub...
Based on the classical electromagnetic radiation theory, the spectral characteristics of 90?? linear...
The effects of super-cycle (or sub-cycle) and super-Gaussian laser pulse shapes on the forward Thoms...
We study the effects of laser pulse focusing on the spectral properties of Thomson scattered radiati...
Effects of nonlinearity in Thomson scattering of a high intensity laser pulse from electrons are ana...
International audienceAs an electron oscillates in an intense laser field, it acquires a highly nonl...
The impact of the carrier-envelope phase (CEP) of an intense multi-cycle laser pulse on the radiatio...
Relativistic, nonlinear Thomson scattering by an electron of an intense laser field has been investi...
The Thomson scattering spectra of an electron by an ultraintense laser field are computed. It is fou...
It has been shown that in the scattered radiation, generated by an ultrashort laser pulse impinging ...
We have investigated the radiation property of a relativistic electron counter propagating in an int...
A method is proposed to determine the carrier-envelope phase (CEP) of a relativistic few-cycle laser...
A method is proposed to determine the carrier-envelope phase (CEP) of a relativistic few-cycle laser...
Linear Thomson scattering of relativistic electrons with few-cycle laser pulses is theoretically ana...
Our paper concerns the scattering of intense laser radiation on free electrons and it is focused on...