We propose a simple nondestructive method to obtain refractive-index profiles of a graded-index (GRIN) light-focusing rod by means of a diffraction grating. In our proposed method, a laser beam is illuminated through a diffraction grating perpendicular to the axis of the GRIN lens and the separation between the zeroth and first-order diffraction peaks is measured and analyzed. The results demonstrate that the refractive-index profiles of commercially available GRIN lenses can be successfully reconstructed
Thesis (Ph. D.)--University of Rochester. College of Engineering and Applied Science. Institute of O...
International audienceThe last twenty years have seen a dramatic improvement in the performance of i...
The human crystalline lens is a complex and intricate structure that continuously grows throughout o...
The shape, depth, and maximum change in refractive index profile are of the most important parameter...
We propose a method that allows for a fast and accurate reconstruction of the refractive index profi...
Radially graded - refractive index (GRIN) rod lenses have a number of advantages over conventional l...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2015Gradient-index (GRIN) materials h...
A simple and rapid method for the determination of the refractive indices of finished lenses has bee...
A very simple method to obtain the refractive index of liquids by using a rectangular glass cell and...
Fiber-optic probes for sensing and imaging applications often employ sections of graded-index (GRIN)...
We present a method for obtaining quantitative three-dimensional reconstructions of the refractive i...
A flexible and efficient algorithm, based on Geometrical Optics (GO) ray-tracing, is presented. The ...
New formulas for the design of cylindrical Graded-Index (GRIN) lens-antennas with integrated feeder ...
AbstractThe optical properties of the crystalline lens are determined by its shape and refractive in...
An experimental method for the refraction index measurement of transparent materials is described ba...
Thesis (Ph. D.)--University of Rochester. College of Engineering and Applied Science. Institute of O...
International audienceThe last twenty years have seen a dramatic improvement in the performance of i...
The human crystalline lens is a complex and intricate structure that continuously grows throughout o...
The shape, depth, and maximum change in refractive index profile are of the most important parameter...
We propose a method that allows for a fast and accurate reconstruction of the refractive index profi...
Radially graded - refractive index (GRIN) rod lenses have a number of advantages over conventional l...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2015Gradient-index (GRIN) materials h...
A simple and rapid method for the determination of the refractive indices of finished lenses has bee...
A very simple method to obtain the refractive index of liquids by using a rectangular glass cell and...
Fiber-optic probes for sensing and imaging applications often employ sections of graded-index (GRIN)...
We present a method for obtaining quantitative three-dimensional reconstructions of the refractive i...
A flexible and efficient algorithm, based on Geometrical Optics (GO) ray-tracing, is presented. The ...
New formulas for the design of cylindrical Graded-Index (GRIN) lens-antennas with integrated feeder ...
AbstractThe optical properties of the crystalline lens are determined by its shape and refractive in...
An experimental method for the refraction index measurement of transparent materials is described ba...
Thesis (Ph. D.)--University of Rochester. College of Engineering and Applied Science. Institute of O...
International audienceThe last twenty years have seen a dramatic improvement in the performance of i...
The human crystalline lens is a complex and intricate structure that continuously grows throughout o...