Wavefront correction with Kalman filtering for the WFIRST-AFTA coronagraph instrument
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[1] L. Pueyo,et al. Optimal dark hole generation via two deformable mirrors with stroke minimization. , 2009, Applied optics.
[2] N. Jeremy Kasdin,et al. Optimal wavefront estimation of incoherent sources , 2014, Astronomical Telescopes and Instrumentation.
[3] N. Jeremy Kasdin,et al. Recursive starlight and bias estimation for high-contrast imaging with an extended Kalman filter , 2016, 1602.02044.
[4] T. Groff,et al. Kalman filtering techniques for focal plane electric field estimation. , 2013, Journal of the Optical Society of America. A, Optics, image science, and vision.
[5] Amir Give'on,et al. Broadband wavefront correction algorithm for high-contrast imaging systems , 2007, SPIE Optical Engineering + Applications.
[6] Bijan Nemati. Detector selection for the WFIRST-AFTA coronagraph integral field spectrograph , 2014, Astronomical Telescopes and Instrumentation.
[7] Amir Give'on,et al. Pair-wise, deformable mirror, image plane-based diversity electric field estimation for high contrast coronagraphy , 2011, Optical Engineering + Applications.
[8] Stuart B. Shaklan,et al. High-contrast coronagraph performance in the presence of DM actuator defects , 2015, SPIE Optical Engineering + Applications.
[9] Brian Kern,et al. Methods and limitations of focal plane sensing, estimation, and control in high-contrast imaging , 2015 .
[10] Eric Cady,et al. High-contrast coronagraph performance in the presence of focal plane mask defects , 2014, Astronomical Telescopes and Instrumentation.
[11] Alexis Carlotti,et al. Shaped pupil Lyot coronagraphs: high-contrast solutions for restricted focal planes , 2016, 1601.05121.
[12] N. Jeremy Kasdin,et al. Laboratory performance of the shaped pupil coronagraphic architecture for the WFIRST/AFTA coronagraph , 2015, SPIE Optical Engineering + Applications.