We present a nondestructive experimental method to measure monotonically varying refractive-index profiles of planar waveguides. The technique is a modification of the Lloyd’s mirage setup proposed by Allman et al. [Appl. Opt. 33, 1806 (1994)] in order to have a reference phase distribution for the interference pattern. The theoretical calculations have been implemented to account for multiple reflections inside the sample. An application of the method to ion-exchanged glass waveguides is reported
We present a nondestructive technique to predict the refractive index profiles of isotropic planar w...
A method is presented whereby the refractive index profile of a planar, surface, dielectric optical ...
The use of a non destructive method for determining the index profile of a waveguide is imperative. ...
Refractive-index profile reconstruction methods for optical slab (direct and inverse analysis method...
The refractive index distribution is a key parameter not only to characterize the technological proc...
A method is presented whereby the refractive-index profile of a planar, surface-dielectric optical w...
Experimental data on silver ion-exchanged glass waveguides are presented. The waveguides are prepare...
With any waveguide device accurate knowledge of the optical characteristics is necessary for device ...
The problem of determining the refractive-index profile of graded-index waveguides from the distribu...
The accuracy of the formulas for calculating the refractive index profile from its tansverse interfe...
Fabrication of planar optical waveguides by silver-ion exchange in glass, and the resulting refracti...
In this paper we present a critical analysis on the refractive index profile reconstruction from nea...
[[abstract]]We present a modified end-fire coupling method to reconstruct two-dimensional index prof...
In this paper, the accuracy of the transverse interference method has been raised up by fully correc...
We present experimental investigations of two configurations for refractive-index profiling and for ...
We present a nondestructive technique to predict the refractive index profiles of isotropic planar w...
A method is presented whereby the refractive index profile of a planar, surface, dielectric optical ...
The use of a non destructive method for determining the index profile of a waveguide is imperative. ...
Refractive-index profile reconstruction methods for optical slab (direct and inverse analysis method...
The refractive index distribution is a key parameter not only to characterize the technological proc...
A method is presented whereby the refractive-index profile of a planar, surface-dielectric optical w...
Experimental data on silver ion-exchanged glass waveguides are presented. The waveguides are prepare...
With any waveguide device accurate knowledge of the optical characteristics is necessary for device ...
The problem of determining the refractive-index profile of graded-index waveguides from the distribu...
The accuracy of the formulas for calculating the refractive index profile from its tansverse interfe...
Fabrication of planar optical waveguides by silver-ion exchange in glass, and the resulting refracti...
In this paper we present a critical analysis on the refractive index profile reconstruction from nea...
[[abstract]]We present a modified end-fire coupling method to reconstruct two-dimensional index prof...
In this paper, the accuracy of the transverse interference method has been raised up by fully correc...
We present experimental investigations of two configurations for refractive-index profiling and for ...
We present a nondestructive technique to predict the refractive index profiles of isotropic planar w...
A method is presented whereby the refractive index profile of a planar, surface, dielectric optical ...
The use of a non destructive method for determining the index profile of a waveguide is imperative. ...