Kalman filtering techniques for focal plane electric field estimation
arXiv:1301.3828 · doi:10.1364/JOSAA.30.000128
Abstract
For a coronagraph to detect faint exoplanets, it will require focal plane wavefront control techniques to continue reaching smaller angular separations and higher contrast levels. These correction algorithms are iterative and the control methods need an estimate of the electric field at the science camera, which requires nearly all of the images taken for the correction. The best way to make such algorithms the least disruptive to science exposures is to reduce the number required to estimate the field. We demonstrate a Kalman filter estimator that uses prior knowledge to create the estimate of the electric field, dramatically reducing the number of exposures required to estimate the image plane electric field while stabilizing the suppression against poor signal-to-noise (SNR). In addition to a significant reduction in exposures, we discuss the relative merit of this algorithm to estimation schemes that do not incorporate prior state estimate history, particularly in regard to estimate error and covariance. Ultimately the filter will lead to an adaptive algorithm which can estimate physical parameters in the laboratory for robustness to variance in the optical train.
full version of conference proceedings arXiv:1208.3462
References in corpus (1)
Cited by in corpus (10)
- Shaped Pupil Lyot Coronagraphs: High-Contrast Solutions for Restricted Focal Planes
- Recursive Starlight and Bias Estimation for High-Contrast Imaging with an Extended Kalman Filter
- Dark Hole Maintenance and A Posteriori Intensity Estimation in the Presence of Speckle Drift in a High-Contrast Space Coronagraph
- Demonstration of an electric field conjugation algorithm for improved starlight rejection through a single mode optical fiber
- Millisecond Exoplanet Imaging, I: Method and Simulation Results
- Laboratory Demonstration of Spatial Linear Dark Field Control For Imaging Extrasolar Planets in Reflected Light
- A Statistical Framework for the Utilization of Simultaneous Pupil Plane and Focal Plane Telemetry for Exoplanet Imaging, Part I: Accounting for Aberrations in Multiple Planes
- High-Contrast Integral Field Spectrograph (HCIFS): multi-spectral wavefront control and reduced-dimensional system identification
- Modeling and performance analysis of Implicit Electric Field Conjugation with two deformable mirrors applied to the Roman Coronagraph
- Extended Linearity in the High-Order Wavefront Sensor for the Roman Coronagraph