Publication | Open Access
Solar multi-conjugate adaptive optics based on high order ground layer adaptive optics and low order high altitude correction
27
Citations
21
References
2017
Year
Optical MaterialsEngineeringOptical TestingMulti-conjugate Adaptive OpticsSpace OpticAstronomical Coordinate SystemOptical PropertiesActive OpticsAstronomical Image AnalysisOptical SystemsPhotonicsHigh Altitude CorrectionSpace WeatherAdaptive OpticAerospace EngineeringOptical Information ProcessingAdaptive OpticsGeometrical AberrationOptical System Analysis
Multi-conjugate adaptive optics (MCAO) is the most promising technique currently developed to enlarge the corrected field of view of adaptive optics for astronomy. In this paper, we propose a new configuration of solar MCAO based on high order ground layer adaptive optics and low order high altitude correction, which result in a homogeneous correction effect in the whole field of view. An individual high order multiple direction Shack-Hartmann wavefront sensor is employed in the configuration to detect the ground layer turbulence for low altitude correction. Furthermore, the other low order multiple direction Shack-Hartmann wavefront sensor supplies the wavefront information caused by high layers' turbulence through atmospheric tomography for high altitude correction. Simulation results based on the system design at the 1-meter New Vacuum Solar Telescope show that the correction uniform of the new scheme is obviously improved compared to conventional solar MCAO configuration.
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