Real Time aberration correction for atmospheric turbulence
Improving image quality of ground-based telescopes
Real-time aberration correction of atmospheric turbulence applied to high power laser or to satellite imaging
Real Time correction of high power laser aberrations
Dynamic beam shaping for high power laser
The instrument to make image acquisition without aberrations
Dynamically adjust/correct the vision of the eye
Ideal for wavefront correction in confocal, multiphoton and any type of super-resolution microscope
Real Time aberration correction for atmospheric turbulence
Improving image quality of ground-based telescopes
Real-time aberration correction of atmospheric turbulence applied to high power laser or to satellite imaging
Real Time correction of high power laser aberrations
Dynamic beam shaping for high power laser
The instrument to make image acquisition without aberrations
Dynamically adjust/correct the vision of the eye
Ideal for wavefront correction in confocal, multiphoton and any type of super-resolution microscope
Dynamically adjust/correct the vision of the eye
One of the scope of the vision science is to study how the eye captures light from the environment and forms an image on the retina.
There two types of needs:
Adaptive optics could solve both the needs, in the first case it could be used to correct wavefront deformation induced by not perfect eye behavior.
Adaptive optics could also be used to make diagnostic instruments more interactive and helping the customer.