A systematic procedure for calculating the general transfer function of a cascaded linear optical system working under the Fresnel regime is presented. The validity of neglecting the quadratic phase factors is also discussed. For the case of inhomogeneous optical devices with Gaussian profiles, explicit expressions for the transfer functions are calculated through specific Gaussian integrals
The parameters of the transfer matrix describing a first-order optical system that is a cascade of k...
By use of matrix-based techniques it is shown how the space–bandwidth product (SBP) of a signal, as ...
Close-form expression for the Strehl ratio calculated in the spatial frequency domain of the optical...
The three-dimensional frequency transfer function for optical imaging systems was introduced by Frie...
This paper presents ray tracing algorithms to evaluate the geometrical modulation transfer function ...
Full analytical expressions for the effect of an arbitrary optical transfer function on small signal...
We study the degrees of freedom of optical systems and signals based on space-frequency (phase space...
The linear canonical transform may be used to simulate the effect of paraxial optical systems on wav...
Experimental data for frequency response obtained from a linear dynamic system were processed to obt...
A technique for decomposing the Optical Transfer Function (OTF) into a novel set of basis functions ...
The optical transfer function (OTF) is used in describing imaging systems in the Fourier domain. So ...
Fresnel Diffraction is worked out in phase space by simple calculations based on the Wigner Distribu...
Close-form expression for the Strehl ratio calculated in the spatial frequency domain of the optical...
We propose systems of orthogonal functions qn to represent optical transfer functions (OTF) characte...
A recurring theme in my research is that mathematical matrix methods may be used in a wide variety o...
The parameters of the transfer matrix describing a first-order optical system that is a cascade of k...
By use of matrix-based techniques it is shown how the space–bandwidth product (SBP) of a signal, as ...
Close-form expression for the Strehl ratio calculated in the spatial frequency domain of the optical...
The three-dimensional frequency transfer function for optical imaging systems was introduced by Frie...
This paper presents ray tracing algorithms to evaluate the geometrical modulation transfer function ...
Full analytical expressions for the effect of an arbitrary optical transfer function on small signal...
We study the degrees of freedom of optical systems and signals based on space-frequency (phase space...
The linear canonical transform may be used to simulate the effect of paraxial optical systems on wav...
Experimental data for frequency response obtained from a linear dynamic system were processed to obt...
A technique for decomposing the Optical Transfer Function (OTF) into a novel set of basis functions ...
The optical transfer function (OTF) is used in describing imaging systems in the Fourier domain. So ...
Fresnel Diffraction is worked out in phase space by simple calculations based on the Wigner Distribu...
Close-form expression for the Strehl ratio calculated in the spatial frequency domain of the optical...
We propose systems of orthogonal functions qn to represent optical transfer functions (OTF) characte...
A recurring theme in my research is that mathematical matrix methods may be used in a wide variety o...
The parameters of the transfer matrix describing a first-order optical system that is a cascade of k...
By use of matrix-based techniques it is shown how the space–bandwidth product (SBP) of a signal, as ...
Close-form expression for the Strehl ratio calculated in the spatial frequency domain of the optical...