Wavefront sensor and method of reconstructing distorted wavefronts
A wavefront sensor includes a mask and a sensor utilized to capture a diffraction pattern generated by light incident to the mask. A reference image is captured in response to a plane wavefront incident on the mask, and another measurement image is captured in response to a distorted wavefront incident on the mask. The distorted wavefront is reconstructed based on differences between the reference image and the measurement image.
1. A wavefront sensor comprising:
a foreground mask that modulates an incoming wavefront to create a diffraction pattern, wherein the foreground mask is a uniform random binary mask; and
a sensor located behind the foreground mask that captures the diffraction pattern generated as a result of modulation of the incoming wavefront by the foreground mask.
2. The wavefront sensor of claim 1 , wherein the foreground mask is located a distance in front of the sensor.
3. The wavefront sensor of claim 2 , wherein the distance is selected based on the application to create a desired diffraction pattern.
4. The wavefront sensor of claim 2 wherein the distance has a range of between 0.1 millimeters to 3.0 millimeters.
5. The wavefront sensor of claim 1 , further comprising:
a processor configured to compare a diffraction pattern of a reference image captured in response to a planar wave incident on the sensor with a diffraction pattern of a measurement image captured in response to a distorted wavefront incident on the sensor.
6. The wavefront sensor of claim 5 , wherein the processor measures local sub-pixel shifts between the reference image and the measurement image and utilizes these local sub-pixel shifts to detect local slopes of the distorted wavefront.