Fully analytic expressions, for the electric and magnetic fields of an ultrashort and tightly focused laser pulse of the radially polarized category, are presented to lowest order of approximation. The fields are derived from scalar and vector potentials, along the lines of our earlier work for a similar pulse of the linearly polarized variety. A systematic program is also described from which the fields may be obtained to any desired accuracy, analytically or numerically. (C) 2017 Elsevier B.V. All rights reserved
Within the framework of plane-wave angular spectrum analysis of electromagnetic fields, a solution f...
International audienceLinearly polarized Gaussian beams, under the slowly varying envelope approxima...
With the development of intense femtosecond laser sources it has become possible to study atomic and...
Fully analytic expressions, for the electric and magnetic fields of an ultrashort and tightly focuse...
Analytic expressions for the electromagnetic fields of an ultrashort, tightly focused, linearly pola...
We find the analytical electromagnetic fields, both paraxial and with non-paraxial corrections, of a...
Tight focusing of radially- or azimuthally-polarized electromagnetic waves becomes attractive becaus...
We present a class of exact nonstationary solutions of Maxwell equations in vacuum from dipole pulse...
We analytically and numerically investigate the propagation of ultrashort tightly focused laser puls...
We analytically and numerically investigate the propagation of ultrashort tightly focused laser puls...
Exact closed-form solutions to Maxwell’s equations are used to investigate electron acceleration dri...
The analytical solution for a monochromatic focused laser beam was recently published [Opt. Lett. 31...
International audienceInvestigation of laser matter interaction with electromagnetic codes requires ...
Measurements of magnetic fields generated during ultrahigh intensity (>10 19Wcm -2), short pulse (0....
International audienceWe propose an algorithm to introduce arbitrarily shaped laser pulses into elec...
Within the framework of plane-wave angular spectrum analysis of electromagnetic fields, a solution f...
International audienceLinearly polarized Gaussian beams, under the slowly varying envelope approxima...
With the development of intense femtosecond laser sources it has become possible to study atomic and...
Fully analytic expressions, for the electric and magnetic fields of an ultrashort and tightly focuse...
Analytic expressions for the electromagnetic fields of an ultrashort, tightly focused, linearly pola...
We find the analytical electromagnetic fields, both paraxial and with non-paraxial corrections, of a...
Tight focusing of radially- or azimuthally-polarized electromagnetic waves becomes attractive becaus...
We present a class of exact nonstationary solutions of Maxwell equations in vacuum from dipole pulse...
We analytically and numerically investigate the propagation of ultrashort tightly focused laser puls...
We analytically and numerically investigate the propagation of ultrashort tightly focused laser puls...
Exact closed-form solutions to Maxwell’s equations are used to investigate electron acceleration dri...
The analytical solution for a monochromatic focused laser beam was recently published [Opt. Lett. 31...
International audienceInvestigation of laser matter interaction with electromagnetic codes requires ...
Measurements of magnetic fields generated during ultrahigh intensity (>10 19Wcm -2), short pulse (0....
International audienceWe propose an algorithm to introduce arbitrarily shaped laser pulses into elec...
Within the framework of plane-wave angular spectrum analysis of electromagnetic fields, a solution f...
International audienceLinearly polarized Gaussian beams, under the slowly varying envelope approxima...
With the development of intense femtosecond laser sources it has become possible to study atomic and...