International audienceBased on the generalised source method, a new method for calculating the light diffraction on one-dimensional dielectric diffraction gratings with an arbitrary profile is proposed. The method is an alternative to the widely used Fourier modal method because it possesses the same possibilities in defining different grating profiles; however, it has a significant advantage in calculating complex-shaped gratings because it requires many fewer mathematical operations. The applicability of the method is shown by comparing the calculation results by this method with the results obtained by the conventional methods of light diffraction calculation on the grating
In my research work, I study diffraction by planar periodic structures (diffraction grating). In the...
Periodic structures, called diffraction gratings, play an important role in optical lithography. The...
Rigorous Fourier methods are methods for the rigorous calculation of the scattering of waves at grat...
International audienceBased on the generalised source method, a new method for calculating the light...
Abstract: "We have recently introduced a method of variation of boundaries for the solution of diffr...
International audienceThe Fourier modal method (FMM) is certainly one of the most popular and genera...
Numerical solution of diffraction problems: a method of variation of boundaries III. Doubly periodic...
International audienceThe generalized source method previously developed for the light diffraction c...
Abstract—An effective computational method based on a conven-tional modal-expansion approach is pres...
The rigorous coupled-wave analysis technique for describing the diffraction of electromagnetic waves...
Over the last two hundred years, diffraction grating spectroscopy has unlocked fundamental discoveri...
A simple and intuitive formalism is presented to describe diffraction in multi-layered periodic stru...
In this work, we illustrate the benefits and problems of mathematical modelling and effective numeri...
We discuss numerical algorithms for the determination of periodic surface structures from light diff...
The semiconductor industry uses lithography machines for manufacturing complex integrated circuits (...
In my research work, I study diffraction by planar periodic structures (diffraction grating). In the...
Periodic structures, called diffraction gratings, play an important role in optical lithography. The...
Rigorous Fourier methods are methods for the rigorous calculation of the scattering of waves at grat...
International audienceBased on the generalised source method, a new method for calculating the light...
Abstract: "We have recently introduced a method of variation of boundaries for the solution of diffr...
International audienceThe Fourier modal method (FMM) is certainly one of the most popular and genera...
Numerical solution of diffraction problems: a method of variation of boundaries III. Doubly periodic...
International audienceThe generalized source method previously developed for the light diffraction c...
Abstract—An effective computational method based on a conven-tional modal-expansion approach is pres...
The rigorous coupled-wave analysis technique for describing the diffraction of electromagnetic waves...
Over the last two hundred years, diffraction grating spectroscopy has unlocked fundamental discoveri...
A simple and intuitive formalism is presented to describe diffraction in multi-layered periodic stru...
In this work, we illustrate the benefits and problems of mathematical modelling and effective numeri...
We discuss numerical algorithms for the determination of periodic surface structures from light diff...
The semiconductor industry uses lithography machines for manufacturing complex integrated circuits (...
In my research work, I study diffraction by planar periodic structures (diffraction grating). In the...
Periodic structures, called diffraction gratings, play an important role in optical lithography. The...
Rigorous Fourier methods are methods for the rigorous calculation of the scattering of waves at grat...