Approximating the frequency dispersion of the permittivity of materials with simple analytical functions is of fundamental importance for understanding and modeling their optical properties. Quite generally, the permittivity can be treated in the complex frequency plane as an analytic function having a countable number of simple poles which determine the dispersion of the permittivity, with the pole weights corresponding to generalized conductivities of the medium at these resonances. The resulting Drude-Lorentz model separates the poles at frequencies with zero real part (Ohm's law and Drude poles) from poles with finite real part (Lorentz poles). To find the parameters of such an analytic function, we minimize the error weighted deviation...
A resonant-state expansion (RSE) for open optical systems with a general frequency dispersion of the...
A stochastic technique is used in this paper to extract the parameters of three models (Havriliak- N...
Electrically conducting polymers (ECPs) are becoming increasingly important in areas such as optoele...
Approximating the frequency dispersion of the permittivity of materials with simple analytical funct...
Approximating the frequency dispersion of the permittivity of materials with simple analytical funct...
Metamaterial which has negative permittivity and permeability is investigated via computer simulatio...
The dispersive resonant-state expansion, developed for an accurate calculation of the resonant state...
The resonant-state expansion (RSE) is generalised to open optical systems with an arbitrary dispers...
none3This paper presents a procedure to extract the complex relative permittivity of a dispersive ma...
We show that applying the Lorentz-Lorenz transformation to the refractive index of metals and semico...
The algorithms of extracting the Lorentzianand Debye-curve parameters of dielectric and magnetic mat...
In order to develop an optoelectronic model for simulating different light trapping structures sandw...
International audienceA considerable amount of materials in nanophotonics are dispersive, enabling t...
AbstractPlasmonics is a revolutionary branch of photonics which offers the benefit of both nanoscale...
International audienceThe fitting of metal optical properties is a topic that has applications in ad...
A resonant-state expansion (RSE) for open optical systems with a general frequency dispersion of the...
A stochastic technique is used in this paper to extract the parameters of three models (Havriliak- N...
Electrically conducting polymers (ECPs) are becoming increasingly important in areas such as optoele...
Approximating the frequency dispersion of the permittivity of materials with simple analytical funct...
Approximating the frequency dispersion of the permittivity of materials with simple analytical funct...
Metamaterial which has negative permittivity and permeability is investigated via computer simulatio...
The dispersive resonant-state expansion, developed for an accurate calculation of the resonant state...
The resonant-state expansion (RSE) is generalised to open optical systems with an arbitrary dispers...
none3This paper presents a procedure to extract the complex relative permittivity of a dispersive ma...
We show that applying the Lorentz-Lorenz transformation to the refractive index of metals and semico...
The algorithms of extracting the Lorentzianand Debye-curve parameters of dielectric and magnetic mat...
In order to develop an optoelectronic model for simulating different light trapping structures sandw...
International audienceA considerable amount of materials in nanophotonics are dispersive, enabling t...
AbstractPlasmonics is a revolutionary branch of photonics which offers the benefit of both nanoscale...
International audienceThe fitting of metal optical properties is a topic that has applications in ad...
A resonant-state expansion (RSE) for open optical systems with a general frequency dispersion of the...
A stochastic technique is used in this paper to extract the parameters of three models (Havriliak- N...
Electrically conducting polymers (ECPs) are becoming increasingly important in areas such as optoele...