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Auto gain control of EMCCD in Shack–Hartmann wavefront sensor for adaptive optics
- Source :
- Optics Communications. 380:469-475
- Publication Year :
- 2016
- Publisher :
- Elsevier BV, 2016.
-
Abstract
- Electron multiplying charge-coupled-device (EMCCD) applied in Shack–Hartmann wavefront sensor (S–H WFS) makes the wavefront sensing more efficient for adaptive optics (AO). However when the brightness of the observed target changes in large ranges in a few minutes, a fixed electron multiplying (EM) gain may not be optimum. Thus an auto-gain-control (AGC) method based on the spots image of the S–H WFS is proposed. The designed control value is the average value of the maximum signals of all the light spots in a frame. It has been demonstrated in the experiments that the control value is sensitive to the change of the target brightness, and is stable in the presence of detecting noises and turbulence influence. The goal value for control is predetermined based on the linear relation of the signal with the EM gain and the number of photons collected in sub-apertures. The conditions of the self-protection of the EMCCD are also considered for the goal value. Simulations and experiments indicate that the proposed control method is efficient, and keeps the sensing in a high SNR which reaches the upper SNR limit when sensing with EMCCD. The self-protection of the EMCCD is avoided during the whole sensing process.
- Subjects :
- Physics
Wavefront
Brightness
Photon
business.industry
02 engineering and technology
Wavefront sensor
021001 nanoscience & nanotechnology
01 natural sciences
Signal
Atomic and Molecular Physics, and Optics
Electronic, Optical and Magnetic Materials
010309 optics
Optics
0103 physical sciences
Automatic gain control
Electrical and Electronic Engineering
Physical and Theoretical Chemistry
0210 nano-technology
Adaptive optics
business
Shack–Hartmann wavefront sensor
Subjects
Details
- ISSN :
- 00304018
- Volume :
- 380
- Database :
- OpenAIRE
- Journal :
- Optics Communications
- Accession number :
- edsair.doi...........f4167a0f8d29101a99dbefce22af07d6