The efficient creation and detection of spatial modes of light has become topical of late, driven by the need to increase photon bit-rates in classical and quantum communications. Such mode creation/detection is traditionally achieved with tools based on linear optics. Here we put forward a new spatial mode detection technique based on the nonlinear optical process of sum-frequency generation. We outline the concept theoretically and demonstrate it experimentally with intense laser beams carrying orbital angular momentum and Hermite–Gaussian modes. Finally, we show that the method can be used to transfer an image from the infrared band to the visible, which implies the efficient conversion of many spatial modes.Peer Reviewe
There is interest in using spatial modes of light to increase the data speed of free-space optical c...
Coherent frequency conversion of structured light, i.e. the ability to manipulate the carrier freque...
We experimentally demonstrate the conversion of a fundamental $\text{TEM}_{00}$ laser mode at 1064\,...
The efficient creation and detection of spatial modes of light has become topical of late, driven by...
We present in this thesis a study of the spatial properties of light at the quantum level. More spec...
Reshaping the spatial profile, or mode, of a quantum state of light is one of the challenges in many...
Acquiring precise information about the mode content of a laser is critical for multiplexed optical ...
We propose a method for finding two-dimensional spatial modes of thermal field through a direct meas...
The resolution of imaging devices is ultimately limited by the diffraction of light. This limit can ...
We use spatial light modulators to observe the quantum entanglement of down-converted photon pairs. ...
The aspheric convex lenses are used in the spontaneous parametric down-conversion process to improve...
Spatial multi-mode quantum optics, also termed « quantum imaging », allows a study of the detection ...
Traditional optical communication systems optimize multiplexing in polarization and wavelength both ...
We demonstrate the utility of frequency upconversion in a non-linear crystal for quantum information...
Spatial quantum optical fluctuations are studied because of new potential applications of quantum op...
There is interest in using spatial modes of light to increase the data speed of free-space optical c...
Coherent frequency conversion of structured light, i.e. the ability to manipulate the carrier freque...
We experimentally demonstrate the conversion of a fundamental $\text{TEM}_{00}$ laser mode at 1064\,...
The efficient creation and detection of spatial modes of light has become topical of late, driven by...
We present in this thesis a study of the spatial properties of light at the quantum level. More spec...
Reshaping the spatial profile, or mode, of a quantum state of light is one of the challenges in many...
Acquiring precise information about the mode content of a laser is critical for multiplexed optical ...
We propose a method for finding two-dimensional spatial modes of thermal field through a direct meas...
The resolution of imaging devices is ultimately limited by the diffraction of light. This limit can ...
We use spatial light modulators to observe the quantum entanglement of down-converted photon pairs. ...
The aspheric convex lenses are used in the spontaneous parametric down-conversion process to improve...
Spatial multi-mode quantum optics, also termed « quantum imaging », allows a study of the detection ...
Traditional optical communication systems optimize multiplexing in polarization and wavelength both ...
We demonstrate the utility of frequency upconversion in a non-linear crystal for quantum information...
Spatial quantum optical fluctuations are studied because of new potential applications of quantum op...
There is interest in using spatial modes of light to increase the data speed of free-space optical c...
Coherent frequency conversion of structured light, i.e. the ability to manipulate the carrier freque...
We experimentally demonstrate the conversion of a fundamental $\text{TEM}_{00}$ laser mode at 1064\,...