Free space propagation and conventional optical systems such as lenses and mirrors all perform spatial unitary transforms. However, the subset of transforms available through these conventional systems is limited in scope. We present here a unitary programmable mode converter (UPMC) capable of performing any spatial unitary transform of the light field. It is based on a succession of reflections on programmable deformable mirrors and free space propagation. We first show theoretically that a UPMC without limitations on resources can perform perfectly any transform. We then build an experimental implementation of the UPMC and show that, even when limited to three reflections on an array of 12 pixels, the UPMC is capable of performing single ...
Sold-state microphotonics allows to build circuitswhich transform w light beams in a unitary way.Suc...
We show how to design an optical device that can perform any linear function or coupling between inp...
Unitary transformations are routinely modeled and implemented in the field of quantum optics. In con...
Free space propagation and conventional optical systems such as lenses and mirrors all perform spati...
Unitary operations are a specific class of linear transformations that have become an essential ingr...
Unitary operations are a specific class of linear transformations that have become an essential ingr...
Beyond the possibilities of linear transformations in polarization space, whose dimensionality is co...
Reshaping the spatial profile, or mode, of a quantum state of light is one of the challenges in many...
A large number of applications in classical and quantum photonics require the capability of implemen...
We present in this thesis a study of the spatial properties of light at the quantum level. More spec...
Unitary transformations are the fundamental building blocks of gates and operations in quantum infor...
[EN] Unitary operations are a specific class of linear transformations that have become an essential...
Linear optical operations are fundamental and significant for both quantum mechanics and classical t...
Along with the growing interest in using the transverse-spatial modes of light in quantum and classi...
Multi-plane light conversion is a method of performing spatial basis transformations using cascaded ...
Sold-state microphotonics allows to build circuitswhich transform w light beams in a unitary way.Suc...
We show how to design an optical device that can perform any linear function or coupling between inp...
Unitary transformations are routinely modeled and implemented in the field of quantum optics. In con...
Free space propagation and conventional optical systems such as lenses and mirrors all perform spati...
Unitary operations are a specific class of linear transformations that have become an essential ingr...
Unitary operations are a specific class of linear transformations that have become an essential ingr...
Beyond the possibilities of linear transformations in polarization space, whose dimensionality is co...
Reshaping the spatial profile, or mode, of a quantum state of light is one of the challenges in many...
A large number of applications in classical and quantum photonics require the capability of implemen...
We present in this thesis a study of the spatial properties of light at the quantum level. More spec...
Unitary transformations are the fundamental building blocks of gates and operations in quantum infor...
[EN] Unitary operations are a specific class of linear transformations that have become an essential...
Linear optical operations are fundamental and significant for both quantum mechanics and classical t...
Along with the growing interest in using the transverse-spatial modes of light in quantum and classi...
Multi-plane light conversion is a method of performing spatial basis transformations using cascaded ...
Sold-state microphotonics allows to build circuitswhich transform w light beams in a unitary way.Suc...
We show how to design an optical device that can perform any linear function or coupling between inp...
Unitary transformations are routinely modeled and implemented in the field of quantum optics. In con...