Increasing the raw contrast of VLT/SPHERE with the dark-hole technique. II. On-sky wavefront correction and coherent differential imaging
arXiv:2208.11244 · doi:10.1051/0004-6361/202244185
Abstract
Context. Direct imaging of exoplanets takes advantage of state-of-the-art adaptive optics (AO) systems, coronagraphy, and post-processing techniques. Coronagraphs attenuate starlight to mitigate the unfavorable flux ratio between an exoplanet and its host star. AO systems provide diffraction-limited images of point sources and minimize optical aberrations that would cause starlight to leak through coronagraphs. Post-processing techniques then estimate and remove residual stellar speckles such as noncommon path aberrations (NCPAs) and diffraction from telescope obscurations. Aims. We aim to demonstrate an efficient method to minimize the speckle intensity due to NCPAs during an observing night on VLT/SPHERE. Methods. We implement an iterative dark-hole (DH) algorithm to remove stellar speckles on-sky before a science observation. It uses a pair-wise probing estimator and a controller based on electric field conjugation. This work presents the first such on-sky minimization of speckles with a DH technique on SPHERE. Results. We show the standard deviation of the normalized intensity in the raw images is reduced by a factor of up to 5 in the corrected region with respect to the current calibration strategy under median conditions for VLT. This level of contrast performance obtained with only 1 min of exposure time reaches median performances on SPHERE that use post-processing methods requiring 1h-long sequences of observations. We also present an alternative calibration method that takes advantage of the starlight coherence and improves the post-processed contrast levels rms by a factor of about 3. Conclusions. This on-sky demonstration represents a decisive milestone for the future design, development, and observing strategy of the next generation of ground-based exoplanet imagers for 10m to 40m telescope.
Accepted in Astronomy & Astrophysics
References in corpus (11)
- The Gemini Planet Imager: First Light
- HST/NICMOS detection of HR 8799 b in 1998
- Calibration and Pre-Compensation of Non-Common Path Aberrations for extreme Adaptive Optics
- On-sky speckle nulling demonstration at small angular separation with SCExAO
- A search for a 5th planet around HR 8799 using the star-hopping RDI technique at VLT/SPHERE
- Speckle suppression and companion detection using coherent differential imaging
- BEAST begins: Sample characteristics and survey performance of the B-star Exoplanet Abundance Study
- Compensation of high-order quasi-static aberrations on SPHERE with the coronagraphic phase diversity (COFFEE)
- Increasing the raw contrast of VLT/SPHERE with the dark hole technique. I. Simulations and validation on the internal source
- Active minimization of non-common path aberrations in long-exposure imaging of exoplanetary systems
- Millisecond Exoplanet Imaging, I: Method and Simulation Results
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- The SPHERE infrared survey for exoplanets (SHINE). V. Complete observations, data reduction and analysis, detection performances, and final results
- Exoplanets in reflected starlight with dual-field interferometry: A case for shorter wavelengths and a fifth Unit Telescope at VLTI/Paranal
- High Speed Focal Plane Wavefront Sensing with an Optical Chopper
- Numerical simulations for the SAXO+ upgrade: Performance analysis of the adaptive optics system
- Extended Linearity in the High-Order Wavefront Sensor for the Roman Coronagraph