We discuss a new method to estimate the absorption coefficient, the index of refraction, and the thickness of thin films using optical transmission data only. To solve the problem we used a pointwise constrained optimization approach, defining a nonlinear programming problem, the unknowns of which are the coefficients to be estimated, with linear constraints that represent prior knowledge about the physical solution. The method applies to all kinds of transmission spectra and does not rely on the existence of fringe patterns or transparency. Results on amorphous semiconductor thin films and gedanken films are reported. They show that the new method is highly reliable. (C) 1997 Optical Society of America.36318238824
In this work, we propose a method to retrieve the thickness and optical constants of dielectric thin...
This contribution addresses the relevant question of retrieving, from transmittance data, the optica...
Determination of the so-called optical constants (complex refractive index N, which is usually a fun...
The present paper considers the calculation of the absorption coefficient, the index of refraction, ...
This contribution addresses the relevant question of retrieving, from transmittance data, the optica...
In recent papers, the problem of estimating the thickness and the optical constants (refractive inde...
In recent papers, the problem of estimating the thickness and the optical constants (refractive ind...
The reverse engineering problem addressed in the present research consists of estimating the thickne...
The reverse engineering problem addressed in the present research consists of estimating the thickne...
Using the Wolfe method, we calculated the procurement of optical constants. These constants, absorpt...
Using the Wolfe method, we calculated the procurement of optical constants. These constants, absorpt...
The problem of estimating the thickness and the optical constants of thin Alms using transmission da...
The full expression for the minima of transmission and reflection spectra of a thin absorbing film a...
Inverse optical problems are of major importance for many scientific and engineering projects. To na...
In this work, we propose a method to retrieve the thickness and optical constants of dielectric thin...
In this work, we propose a method to retrieve the thickness and optical constants of dielectric thin...
This contribution addresses the relevant question of retrieving, from transmittance data, the optica...
Determination of the so-called optical constants (complex refractive index N, which is usually a fun...
The present paper considers the calculation of the absorption coefficient, the index of refraction, ...
This contribution addresses the relevant question of retrieving, from transmittance data, the optica...
In recent papers, the problem of estimating the thickness and the optical constants (refractive inde...
In recent papers, the problem of estimating the thickness and the optical constants (refractive ind...
The reverse engineering problem addressed in the present research consists of estimating the thickne...
The reverse engineering problem addressed in the present research consists of estimating the thickne...
Using the Wolfe method, we calculated the procurement of optical constants. These constants, absorpt...
Using the Wolfe method, we calculated the procurement of optical constants. These constants, absorpt...
The problem of estimating the thickness and the optical constants of thin Alms using transmission da...
The full expression for the minima of transmission and reflection spectra of a thin absorbing film a...
Inverse optical problems are of major importance for many scientific and engineering projects. To na...
In this work, we propose a method to retrieve the thickness and optical constants of dielectric thin...
In this work, we propose a method to retrieve the thickness and optical constants of dielectric thin...
This contribution addresses the relevant question of retrieving, from transmittance data, the optica...
Determination of the so-called optical constants (complex refractive index N, which is usually a fun...