A solution of the Dirac equation in a strong laser field presenting a nonspreading wave packet in the rest frame of the electron is derived. It consists of a generalization of the self-accelerating free electron wave packet [Kaminer et al. Nature Phys. 11, 261 (2015)] to the case with the background of a strong laser field. Built upon the notion of nonspreading for an extended relativistic wavepacket, the concept of Born rigidity for accelerated motion in relativity is the key ingredient of the solution. At its core, the solution comes from the connection between the self-accelerated free electron wave packet and the eigenstate of a Dirac electron in a constant and homogeneous gravitational field via the equivalence principle. The solution ...
International audienceThe emission from an electron in the field of a relativistically strong laser ...
International audienceThe emission from an electron in the field of a relativistically strong laser ...
International audienceThe emission from an electron in the field of a relativistically strong laser ...
The wave packet dynamics of electrons driven by strong laser fields is examined with the objective t...
The wave packet dynamics of electrons driven by strong laser fields is examined with the objective t...
The time-dependent Dirac equation is solved numerically on a space-time grid for an atom in a strong...
The wave packet dynamics of electrons driven by strong laser fields is examined with the objective t...
The wave packet dynamics of electrons driven by strong laser fields is examined with the objective t...
We propose a general theoretical scheme of relativistic electron-nucleus coupled dynamics of molecul...
We show that an all-optical configuration of the laser-electron collision in the $\lambda^{3}$ confi...
We report recent results of experiments and simulations in the regime of peak laser intensities abov...
Using a variation of the celebrated Volkov solution, the Klein-Gordon equation for a charged particl...
We discuss various nonlinear optical processes that occur as an intense laser propagates through a r...
Solving the Dirac equation is a formidable task due to the high frequency and the degrees of freedom...
Solving the Dirac equation is a formidable task due to the high frequency and the degrees of freedom...
International audienceThe emission from an electron in the field of a relativistically strong laser ...
International audienceThe emission from an electron in the field of a relativistically strong laser ...
International audienceThe emission from an electron in the field of a relativistically strong laser ...
The wave packet dynamics of electrons driven by strong laser fields is examined with the objective t...
The wave packet dynamics of electrons driven by strong laser fields is examined with the objective t...
The time-dependent Dirac equation is solved numerically on a space-time grid for an atom in a strong...
The wave packet dynamics of electrons driven by strong laser fields is examined with the objective t...
The wave packet dynamics of electrons driven by strong laser fields is examined with the objective t...
We propose a general theoretical scheme of relativistic electron-nucleus coupled dynamics of molecul...
We show that an all-optical configuration of the laser-electron collision in the $\lambda^{3}$ confi...
We report recent results of experiments and simulations in the regime of peak laser intensities abov...
Using a variation of the celebrated Volkov solution, the Klein-Gordon equation for a charged particl...
We discuss various nonlinear optical processes that occur as an intense laser propagates through a r...
Solving the Dirac equation is a formidable task due to the high frequency and the degrees of freedom...
Solving the Dirac equation is a formidable task due to the high frequency and the degrees of freedom...
International audienceThe emission from an electron in the field of a relativistically strong laser ...
International audienceThe emission from an electron in the field of a relativistically strong laser ...
International audienceThe emission from an electron in the field of a relativistically strong laser ...