International audienceWe propose a new device that is able to perform highly sensitive wavefront measurements based on the use of continuous position sensitive detectors and without resorting to any reconstruction process. We demonstrate experimentally its ability to measure small wavefront distortions through the characterization of pump-induced refractive index changes in laser material. In addition, it is shown using computer-generated holograms that this device can detect phase discontinuities as well as improve the quality of sharp phase variations measurements. Results are compared to reference Shack-Hartmann measurements, and dramatic enhancements are obtained
Recent studies of coherent wave propagation through turbulence have shown that under conditions wher...
While adaptive optical systems are able to remove moderate wavefront distortions in scintillated opt...
Many error sources can affect the accuracy of displacement measuring interferometer systems. In hete...
International audienceWe propose a new device that is able to perform highly sensitive wavefront mea...
Wavefront sensor is designed to measure both intensity distribution and phase distortion of optical ...
This thesis addresses the design, implementation and performance of an integrated Hartmann-Shack wav...
The efficiency of laser communications systems is significantly limited by atmospheric effects. Nota...
We are studying the effectiveness of HWFS for measuring the first few low-order aberrations. In lite...
We present results of a fast holographic wavefront sensor. The modal device consists of a multiplexe...
The wavefront measurement is an important part both in adaptive optics and in optical shop testing. ...
We have designed, built and tested a high-performance phase camera, which can observe laser wavefron...
Adaptive optics is concerned with the correction of phase distortions in wavefronts which degrade th...
The process of Zernike mode detection with a Shack-Hartmann wavefront sensor is computationally exte...
Phase-imaging techniques extract the optical path length information of a scene, whereas wavefront s...
We describe a Hartmann wavefront sensor that can measure changes in a wavefront with a sensitivity o...
Recent studies of coherent wave propagation through turbulence have shown that under conditions wher...
While adaptive optical systems are able to remove moderate wavefront distortions in scintillated opt...
Many error sources can affect the accuracy of displacement measuring interferometer systems. In hete...
International audienceWe propose a new device that is able to perform highly sensitive wavefront mea...
Wavefront sensor is designed to measure both intensity distribution and phase distortion of optical ...
This thesis addresses the design, implementation and performance of an integrated Hartmann-Shack wav...
The efficiency of laser communications systems is significantly limited by atmospheric effects. Nota...
We are studying the effectiveness of HWFS for measuring the first few low-order aberrations. In lite...
We present results of a fast holographic wavefront sensor. The modal device consists of a multiplexe...
The wavefront measurement is an important part both in adaptive optics and in optical shop testing. ...
We have designed, built and tested a high-performance phase camera, which can observe laser wavefron...
Adaptive optics is concerned with the correction of phase distortions in wavefronts which degrade th...
The process of Zernike mode detection with a Shack-Hartmann wavefront sensor is computationally exte...
Phase-imaging techniques extract the optical path length information of a scene, whereas wavefront s...
We describe a Hartmann wavefront sensor that can measure changes in a wavefront with a sensitivity o...
Recent studies of coherent wave propagation through turbulence have shown that under conditions wher...
While adaptive optical systems are able to remove moderate wavefront distortions in scintillated opt...
Many error sources can affect the accuracy of displacement measuring interferometer systems. In hete...