We present a generalized velocity gauge form of the relativistic laser-matter interaction. In comparison with the (equivalent) regular minimal coupling description, this form of light-matter interaction results in superior convergence properties for the numerical solution of the time-dependent Dirac equation. This applies both to the numerical treatment and, more importantly, to the multipole expansion of the laser field. The advantages of the alternative gauge is demonstrated in hydrogen by studies of the dynamics following the impact of superintense laser pulses of extreme ultraviolet wavelengths and subfemtosecond duration.publishedVersio
<p><strong>Figure 2.</strong> Transparent boundary conditions.</p> <p><strong>Abstract</strong></p> ...
The Thomas--Reiche--Kuhn sum rule is used to form an effective potential that is added to the time-d...
The advancements of laser technology make it possible to produce high-energy lasers. It is of intere...
We present a generalized velocity gauge form of the relativistic laser-matter interaction. In compar...
We present a generalized velocity gauge form of the relativistic laser-matter interaction. In compar...
During the past decades, the development of laser technology has produced pulses with increasingly h...
During the past decades, the development of laser technology has produced pulses with increasingly h...
A semirelativistic formulation of light-matter interaction is derived using the so called propagatio...
An alternative and powerful Schrödinger-like equation for describing beyond dipole laser-matter inte...
We study the breakdown of the nonrelativistic approximation in the multiphoton ionization of atomic ...
A semirelativistic formulation of light-matter interaction is derived using the so called propagatio...
A semirelativistic formulation of light-matter interaction is derived using the so called propagatio...
<p><strong>Figure 3.</strong> Comparison between the reference solution and the numerical solutions ...
An alternative and powerful Schrödinger-like equation for describing beyond dipole laser-matter inte...
An alternative and powerful Schrödinger-like equation for describing beyond dipole laser-matter inte...
<p><strong>Figure 2.</strong> Transparent boundary conditions.</p> <p><strong>Abstract</strong></p> ...
The Thomas--Reiche--Kuhn sum rule is used to form an effective potential that is added to the time-d...
The advancements of laser technology make it possible to produce high-energy lasers. It is of intere...
We present a generalized velocity gauge form of the relativistic laser-matter interaction. In compar...
We present a generalized velocity gauge form of the relativistic laser-matter interaction. In compar...
During the past decades, the development of laser technology has produced pulses with increasingly h...
During the past decades, the development of laser technology has produced pulses with increasingly h...
A semirelativistic formulation of light-matter interaction is derived using the so called propagatio...
An alternative and powerful Schrödinger-like equation for describing beyond dipole laser-matter inte...
We study the breakdown of the nonrelativistic approximation in the multiphoton ionization of atomic ...
A semirelativistic formulation of light-matter interaction is derived using the so called propagatio...
A semirelativistic formulation of light-matter interaction is derived using the so called propagatio...
<p><strong>Figure 3.</strong> Comparison between the reference solution and the numerical solutions ...
An alternative and powerful Schrödinger-like equation for describing beyond dipole laser-matter inte...
An alternative and powerful Schrödinger-like equation for describing beyond dipole laser-matter inte...
<p><strong>Figure 2.</strong> Transparent boundary conditions.</p> <p><strong>Abstract</strong></p> ...
The Thomas--Reiche--Kuhn sum rule is used to form an effective potential that is added to the time-d...
The advancements of laser technology make it possible to produce high-energy lasers. It is of intere...