Periodic structures as photonic crystals are widely used in modern laser devices, communication technologies and for creating various beam splitters and filters. Diffraction gratings are applied for creating 3D television sets, DVD and Blu-ray drives and reflective structures (Berkley mirror). It is important to simulate diffraction on such structures to design optical systems with predetermined properties based on photonic crystals and diffraction gratings. Methods of simulating diffraction on periodic structures uses theory of Floquet-Bloch and rigorous coupled-wave analysis (RCWA). Current work is dedicated to analysis of photonic band gaps and simulating diffraction on one-dimensional binary diffraction grating using RCWA. The Maxwell's...
In this paper, an accurate and efficient characterization of two-dimensional photonic bandgap struct...
Diffraction gratings are often used in optical metrology. When an electromagnetic wave is incident o...
In my research work, I study diffraction by planar periodic structures (diffraction grating). In the...
Periodic structures as photonic crystals are widely used in modern laser devices, communication tech...
The diffraction of light is an important phenomenon with wide physical and engineering appli- cation...
The diffraction of light is an important phenomenon with wide physical and engineering appli- cation...
Photonic crystals are artificial dielectric lattice structures which may be periodic in up to three ...
The properties of 1-, 2- and 3- dimensional periodic structures, generically known as photonic cryst...
The properties of 1-, 2- and 3- dimensional periodic structures, generically known as photonic cryst...
Subject of investigation: surface periodic structures and diffraction gratings. Purpose of the work:...
In this paper, an accurate and efficient characterization of two-dimensional photonic bandgap struct...
The rigorous coupled-wave analysis technique for describing the diffraction of electromagnetic waves...
In this paper, an accurate and efficient characterization of two-dimensional photonic bandgap struct...
The rigorous coupled-wave analysis technique for describing the diffraction of electromagnetic waves...
We present a modification of a well-known mathematical model based on the Rigorous Coupled-Wave Anal...
In this paper, an accurate and efficient characterization of two-dimensional photonic bandgap struct...
Diffraction gratings are often used in optical metrology. When an electromagnetic wave is incident o...
In my research work, I study diffraction by planar periodic structures (diffraction grating). In the...
Periodic structures as photonic crystals are widely used in modern laser devices, communication tech...
The diffraction of light is an important phenomenon with wide physical and engineering appli- cation...
The diffraction of light is an important phenomenon with wide physical and engineering appli- cation...
Photonic crystals are artificial dielectric lattice structures which may be periodic in up to three ...
The properties of 1-, 2- and 3- dimensional periodic structures, generically known as photonic cryst...
The properties of 1-, 2- and 3- dimensional periodic structures, generically known as photonic cryst...
Subject of investigation: surface periodic structures and diffraction gratings. Purpose of the work:...
In this paper, an accurate and efficient characterization of two-dimensional photonic bandgap struct...
The rigorous coupled-wave analysis technique for describing the diffraction of electromagnetic waves...
In this paper, an accurate and efficient characterization of two-dimensional photonic bandgap struct...
The rigorous coupled-wave analysis technique for describing the diffraction of electromagnetic waves...
We present a modification of a well-known mathematical model based on the Rigorous Coupled-Wave Anal...
In this paper, an accurate and efficient characterization of two-dimensional photonic bandgap struct...
Diffraction gratings are often used in optical metrology. When an electromagnetic wave is incident o...
In my research work, I study diffraction by planar periodic structures (diffraction grating). In the...