Phasics wavefront sensor, based on lateral shearing interferometry, fulfils laser vision correction needs. The main features of Phasics SID4 sensor are:
- compactness
- insensitivity to alignment
- tunable dynamic range
- its intrinsic high resolution
All of these characteristics are very useful for laser vision correction.
Thanks to its insensitivity to alignment, patient eye movements are no longer a source of error in ophthalmic wavefront measurement, which induces an accurate laser vision correction.
Phasics SID4 allows reaching high resolution in laser vision correction. It is, for instance, useful for high resolution retina imaging through the use of the must recent advanced devices in adaptive optics such LCD or MEMS.
We can detail you the latest advancements in laser vision correction poised to revolutionize eye care.
Contact Phasics for more information on laser vision correction.
aberration control | adaptive optic loops | adaptive optics | flatness optical measurement | focal spot shaping | interferometer | interferometers | laser beam analyser | laser beam analysis | laser beam sensor | laser beam shaping | laser vision correction | lateral shearing interferometer | lateral shearing interferometry | oasys | ophthalmic wavefront | optical metrology | phase control | phase sensing | phasics | roughness optical measurement | shack hartmann | shack hartmann sensor | sid4 | wavefront aberrometer | wavefront analyser | wavefront analysis | wavefront_control.html | wavefront correction | wavefront sensor |