In this work, we present a simple method for the direct retrieval of the effective permittivity and permeability of a bulk semi-infinite metamaterial from variable-angle spectroscopic ellipsometry measurements. Starting from the well-known Fresnel equations, we derive an analytical expression in which unknown coefficients are fitted to the experimental data using a linear regression model. The effective permittivity and permeability are then determined by solving a simple system and the correct solution is selected based on physical criteria. As an example, the method is applied to the case of a self-assembled metamaterial exhibiting strong isotropic optical magnetism
Metamaterials are complex structured mixed-material systems with tailored physical properties that h...
Metamaterials are composite materials acting as effectively continuous media, which are capable of r...
In the field of electromagnetism, there are materials known as metamaterials which exhibit unique pr...
In this work, we present a simple method for the direct retrieval of the effective permittivity and...
Computing the permittivity and permeability of complex materials has previously relied on a series o...
We present a general method for retrieving the effective tensorial permittivity of uniaxially anisot...
Hyperbolic metamaterials are optical materials characterized by highly anisotropic effective permitt...
In this contribution, we present the employment of a parametric model based procedure to retrieve th...
We propose the method of effective parameters retrieval based on the Bloch mode analysis of periodic...
We have derived a closed-form expression relating the S-parameters and the general constitutive matr...
A novel systematic method for the retrieval of the constitutive electromagnetic parameters of metama...
We propose a method to retrieve the effective constitutive parameters of a slab of bianisotropic met...
Composite metamaterials are periodic metal-dielectric structures operating at wavelengths larger tha...
Cataloged from PDF version of article.A novel approach to find the effective electric and A novel a...
Metamaterials' properties may be quantified through the assignment of bulk material parameters such ...
Metamaterials are complex structured mixed-material systems with tailored physical properties that h...
Metamaterials are composite materials acting as effectively continuous media, which are capable of r...
In the field of electromagnetism, there are materials known as metamaterials which exhibit unique pr...
In this work, we present a simple method for the direct retrieval of the effective permittivity and...
Computing the permittivity and permeability of complex materials has previously relied on a series o...
We present a general method for retrieving the effective tensorial permittivity of uniaxially anisot...
Hyperbolic metamaterials are optical materials characterized by highly anisotropic effective permitt...
In this contribution, we present the employment of a parametric model based procedure to retrieve th...
We propose the method of effective parameters retrieval based on the Bloch mode analysis of periodic...
We have derived a closed-form expression relating the S-parameters and the general constitutive matr...
A novel systematic method for the retrieval of the constitutive electromagnetic parameters of metama...
We propose a method to retrieve the effective constitutive parameters of a slab of bianisotropic met...
Composite metamaterials are periodic metal-dielectric structures operating at wavelengths larger tha...
Cataloged from PDF version of article.A novel approach to find the effective electric and A novel a...
Metamaterials' properties may be quantified through the assignment of bulk material parameters such ...
Metamaterials are complex structured mixed-material systems with tailored physical properties that h...
Metamaterials are composite materials acting as effectively continuous media, which are capable of r...
In the field of electromagnetism, there are materials known as metamaterials which exhibit unique pr...