The Advanced Technology Solar Telescope (ATST) is an off-axis Gregorian astronomical telescope design. The ATST is expected to be subject to thermal and gravitational effects that result in misalignments of its mirrors and warping of its primary mirror. These effects require active, closed-loop correction to maintain its as-designed diffraction-limited optical performance. The simulation and modeling of the ATST with a closed-loop correction strategy are presented. The correction strategy is derived from the linear mathematical properties of two Jacobian, or influence, matrices that map the ATST rigid-body (RB) misalignments and primary mirror figure errors to wavefront sensor (WFS) measurements. The two Jacobian matrices also quantify the sensitivities of the ATST to RB and primary mirror figure perturbations. The modeled active correction strategy results in a decrease of the rms wavefront error averaged over the field of view (FOV) from 500 to 19 nm, subject to 10 nm rms WFS noise. This result is obtained utilizing nine WFSs distributed in the FOV with a 300 nm rms astigmatism figure error on the primary mirror. Correction of the ATST RB perturbations is demonstrated for an optimum subset of three WFSs with corrections improving the ATST rms wavefront error from 340 to 17.8 nm. In addition to the active correction of the ATST, an analytically robust sensitivity analysis that can be generally extended to a wider class of optical systems is presented.
[1]
J Maeda.
Image restoration by an iterative damped least-squares method with non-negativity constraint.
,
1985,
Applied optics.
[2]
E. P. Wallner.
Optimal wave-front correction using slope measurements
,
1983
.
[3]
Gary Chanan,et al.
Measurement accuracy in control of segmented-mirror telescopes.
,
2004,
Applied optics.
[4]
H H Barrett,et al.
Image reconstruction from coded data: II. Code design.
,
1985,
Journal of the Optical Society of America. A, Optics and image science.
[5]
Byron M. Welsh,et al.
Analysis of Multiconjugate Adaptive Optics
,
1992,
Adaptive Optics for Large Telescopes.