By use of matrix-based techniques it is shown how the space–bandwidth product (SBP) of a signal, as indicated by the location of the signal energy in the Wigner distribution function, can be tracked through any quadraticphase optical system whose operation is described by the linear canonical transform. Then, applying the regular uniform sampling criteria imposed by the SBP and linking the criteria explicitly to a decomposition of the optical matrix of the system, it is shown how numerical algorithms (employing interpolation and decimation), which exhibit both invertibility and additivity, can be implemented. Algorithms appearing in the literature for a variety of transforms (Fresnel, fractional Fourier) are shown to be special cases of ou...
We provide a general treatment of optical two-dimensional fractional Fourier transforming systems. W...
The linear canonical transform (LCT) describes the effect of any quadratic phase system (QPS) on an ...
We present a short overview on the application of fractional cyclic and linear canonical transformat...
By use of matrix-based techniques it is shown how the space–bandwidth product (SBP) of a signal, as ...
By use of matrix-based techniques it is shown how the space–bandwidth product (SBP) of a signal, as ...
By use of matrix-based techniques it is shown how the space–bandwidth product (SBP) of a signal, as ...
By use of matrix-based techniques it is shown how the space–bandwidth product (SBP) of a signal, as ...
The linear canonical transform (LCT) describes the effect of any quadratic phase system (QPS) on an ...
The linear canonical transform (LCT) describes the effect of any quadratic phase system (QPS) on an ...
The linear canonical transform (LCT) describes the effect of any quadratic phase system (QPS) on an ...
Linear canonical transforms are encountered in many areas of science and engineering. Important tran...
The concept of fractional Fourier transform and its applications is discussed. The fractional Fourie...
We present a short overview on the application of fractional cyclic and linear canonical transformat...
The linear canonical transform may be used to simulate the effect of paraxial optical systems on wav...
We present a short overview on the application of fractional cyclic and linear canonical transformat...
We provide a general treatment of optical two-dimensional fractional Fourier transforming systems. W...
The linear canonical transform (LCT) describes the effect of any quadratic phase system (QPS) on an ...
We present a short overview on the application of fractional cyclic and linear canonical transformat...
By use of matrix-based techniques it is shown how the space–bandwidth product (SBP) of a signal, as ...
By use of matrix-based techniques it is shown how the space–bandwidth product (SBP) of a signal, as ...
By use of matrix-based techniques it is shown how the space–bandwidth product (SBP) of a signal, as ...
By use of matrix-based techniques it is shown how the space–bandwidth product (SBP) of a signal, as ...
The linear canonical transform (LCT) describes the effect of any quadratic phase system (QPS) on an ...
The linear canonical transform (LCT) describes the effect of any quadratic phase system (QPS) on an ...
The linear canonical transform (LCT) describes the effect of any quadratic phase system (QPS) on an ...
Linear canonical transforms are encountered in many areas of science and engineering. Important tran...
The concept of fractional Fourier transform and its applications is discussed. The fractional Fourie...
We present a short overview on the application of fractional cyclic and linear canonical transformat...
The linear canonical transform may be used to simulate the effect of paraxial optical systems on wav...
We present a short overview on the application of fractional cyclic and linear canonical transformat...
We provide a general treatment of optical two-dimensional fractional Fourier transforming systems. W...
The linear canonical transform (LCT) describes the effect of any quadratic phase system (QPS) on an ...
We present a short overview on the application of fractional cyclic and linear canonical transformat...