We present a compact optical decryption system using the generalized phase contrast (GPC) method implemented in a planar integrated micro-optical (PO) device. An encrypted phase pattern is deciphered by the application of a decrypting phase key and visualized using a miniaturized implementation of the GPC method. The current proof-of-principle demonstration makes use of a PO device composed of diffractive micro-optical elements to form a 4-f lens imaging setup with a spatial phase-only filter at the Fourier plane. Successful decryption of a 17 × 9-pixel encrypted phase mask is achieved with high-contrast visualization of the original pattern
The use of phase has a long standing history in optical image processing, with early milestones bein...
We present a new method using single-path beam-propagation-based imaging via aperture movement for o...
[[abstract]]This work describes a full phase encoding technique for digital holographic encryption b...
A phase-only encryption/decryption scheme with the readout based on the zeroth-order phase-contrast ...
We analyse and optimize the output of a planar optical device implementing the generalized phase con...
Generalized Phase Contrast elevates the phase contrast technique not only to improve phase imaging b...
In order to simplify the optical setup and the encryption process, a diffractive-imaging-based optic...
The use of phase has a long standing history in optical image processing, with early milestones bein...
The use of phase has a long standing history in optical image processing, with early milestones bein...
The use of phase has a long standing history in optical image processing, with early milestones bein...
A method for decrypting a binary phase-only mask using an amplitude-only spatial light modulator key...
We propose an optical encryption technique where the encrypted field and the decrypting key are obta...
Based on a fully phase encoding and phase retrieval algorithm, a diffractive-imaging-based optical e...
Multi-channel information encryption technology has been implemented by optical metasurfaces owing t...
Multi-channel information encryption technology has been implemented by optical metasurfaces owing t...
The use of phase has a long standing history in optical image processing, with early milestones bein...
We present a new method using single-path beam-propagation-based imaging via aperture movement for o...
[[abstract]]This work describes a full phase encoding technique for digital holographic encryption b...
A phase-only encryption/decryption scheme with the readout based on the zeroth-order phase-contrast ...
We analyse and optimize the output of a planar optical device implementing the generalized phase con...
Generalized Phase Contrast elevates the phase contrast technique not only to improve phase imaging b...
In order to simplify the optical setup and the encryption process, a diffractive-imaging-based optic...
The use of phase has a long standing history in optical image processing, with early milestones bein...
The use of phase has a long standing history in optical image processing, with early milestones bein...
The use of phase has a long standing history in optical image processing, with early milestones bein...
A method for decrypting a binary phase-only mask using an amplitude-only spatial light modulator key...
We propose an optical encryption technique where the encrypted field and the decrypting key are obta...
Based on a fully phase encoding and phase retrieval algorithm, a diffractive-imaging-based optical e...
Multi-channel information encryption technology has been implemented by optical metasurfaces owing t...
Multi-channel information encryption technology has been implemented by optical metasurfaces owing t...
The use of phase has a long standing history in optical image processing, with early milestones bein...
We present a new method using single-path beam-propagation-based imaging via aperture movement for o...
[[abstract]]This work describes a full phase encoding technique for digital holographic encryption b...