Calibration of quasi-static aberrations in exoplanet direct-imaging instruments with a Zernike phase-mask sensor
arXiv:1305.5143 · doi:10.1051/0004-6361/201219797
Abstract
Context. Several exoplanet direct imaging instruments will soon be in operation. They use an extreme adaptive optics (XAO) system to correct the atmospheric turbulence and provide a highly-corrected beam to a near-infrared (NIR) coronagraph for starlight suppression. The performance of the coronagraph is however limited by the non-common path aberrations (NCPA) due to the differential wavefront errors existing between the visible XAO sensing path and the NIR science path, leading to residual speckles in the coronagraphic image. Aims. Several approaches have been developed in the past few years to accurately calibrate the NCPA, correct the quasi-static speckles and allow the observation of exoplanets at least 1e6 fainter than their host star. We propose an approach based on the Zernike phase-contrast method for the measurements of the NCPA between the optical path seen by the visible XAO wavefront sensor and that seen by the near-IR coronagraph. Methods. This approach uses a focal plane phase mask of size λ/D, where λ and D denote the wavelength and the telescope aperture diameter, respectively, to measure the quasi-static aberrations in the upstream pupil plane by encoding them into intensity variations in the downstream pupil image. We develop a rigorous formalism, leading to highly accurate measurement of the NCPA, in a quasi-linear way during the observation. Results. For a static phase map of standard deviation 44 nm rms at λ = 1.625 μm (0.026 λ), we estimate a possible reduction of the chromatic NCPA by a factor ranging from 3 to 10 in the presence of AO residuals compared with the expected performance of a typical current-generation system. This would allow a reduction of the level of quasi-static speckles in the detected images by a factor 10 to 100 hence, correspondingly improving the capacity to observe exoplanets.
11 pages, 14 figures, A&A accepted, 2nd version after language-editor corrections
References in corpus (14)
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- Theoretical Limits on Extrasolar Terrestrial Planet Detection with Coronagraphs
- A Combined Subaru/VLT/MMT 1--5 Micron Study of Planets Orbiting HR 8799: Implications for Atmospheric Properties, Masses, and Formation
- A New High Contrast Imaging Program at Palomar Observatory
- M-band Imaging of the HR 8799 Planetary System Using an Innovative LOCI-based Background Subtraction Technique
- Calibration and Pre-Compensation of Non-Common Path Aberrations for extreme Adaptive Optics
- A 5 Micron Image of beta Pictoris b at a Sub-Jupiter Projected Separation: Evidence for a Misalignment Between the Planet and the Inner, Warped Disk
- Wavefront error correction and Earth-like planet detection by Self-Coherent Camera in space
- Exoplanet characterization with long slit spectroscopy
- On-sky multi-wavelength phasing of segmented telescopes with the Zernike phase contrast sensor
- On-Line Long-Exposure Phase Diversity: a Powerful Tool for Sensing Quasi-Static Aberrations of Extreme Adaptive Optics Imaging Systems
- SPICES: Spectro-Polarimetric Imaging and Characterization of Exoplanetary Systems
- Coronagraphic Low Order Wave Front Sensor : post-processing sensitivity enhancer for high performance coronagraphs
- Precise Wavefront Correction with an Unbalanced Nulling Interferometer for Exo-Planet Imaging Coronagraphs
Cited by in corpus (61)
- SPHERE: the exoplanet imager for the Very Large Telescope
- Calibration of quasi-static aberrations in exoplanet direct-imaging instruments with a Zernike phase-mask sensor. II. Concept validation with ZELDA on VLT/SPHERE
- Apodized pupil Lyot coronagraphs for arbitrary apertures. V. Hybrid Shaped Pupil designs for imaging Earth-like planets with future space observatories
- Physics-based model of the adaptive-optics corrected point-spread-function
- Apodized Pupil Lyot Coronagraphs for Arbitrary Apertures. IV. Reduced Inner Working Angle and Increased Robustness to Low-Order Aberrations
- Calibration of quasi-static aberrations in exoplanet direct-imaging instruments with a Zernike phase-mask sensor. III. On-sky validation in VLT/SPHERE
- General formalism for Fourier based Wave Front Sensing
- Direct imaging and spectroscopy of exoplanets with the ELT/HARMONI high-contrast module
- A Demonstration of Wavefront Sensing and Mirror Phasing from the Image Domain
- Fine cophasing of segmented aperture telescopes with ZELDA, a Zernike wavefront sensor in the diffraction-limited regime
- Focal Plane Wavefront Sensing using Machine Learning: Performance of Convolutional Neural Networks compared to Fundamental Limits
- Simultaneous phase and amplitude aberration sensing with a liquid-crystal vector-Zernike phase mask
- Blind deconvolution in astronomy with adaptive optics: the parametric marginal approach
- Calibration of the island effect: Experimental validation of closed-loop focal plane wavefront control on Subaru/SCExAO
- High-contrast imager for Complex Aperture Telescopes (HiCAT): 1. Testbed design
- Variation on a Zernike wavefront sensor theme: optimal use of photons
- Wavefront sensing and control in space-based coronagraph instruments using Zernike's phase-contrast method
- Focal-plane wavefront sensing with the vector Apodizing Phase Plate
- Phase II of the Keck Planet Imager and Characterizer: system-level laboratory characterization and preliminary on-sky commissioning
- High-contrast imager for Complex Aperture Telescopes (HiCAT): 3. first lab results with wavefront control
- Imaging exoplanets with coronagraphic instruments
- Patterned liquid-crystal optics for broadband coronagraphy and wavefront sensing
- The wind-driven halo in high-contrast images I: analysis from the focal plane images of SPHERE
- Laser Guide Star for Large Segmented-Aperture Space Telescopes, Part I: Implications for Terrestrial Exoplanet Detection and Observatory Stability
- Calibration of quasi-static aberrations in exoplanet direct-imaging instruments with a Zernike phase-mask sensor. IV. Temporal stability of non-common path aberrations in VLT/SPHERE
- Quantifying telescope phase discontinuities external to AO-systems by use of Phase Diversity and Focal Plane Sharpening
- Heimdallr, Baldr and Solarstein: designing the next generation of VLTI instruments in the Asgard suite
- Apodization in high-contrast long-slit spectroscopy. II. Concept validation and first on-sky results with VLT/SPHERE
- Variation around a Pyramid theme: optical recombination and optimal use of photons
- Coronagraphic phase diversity through residual turbulence: performance study and experimental validation
- Calibration of residual aberrations in exoplanet imagers with large numbers of degrees of freedom
- Analytical determination of orbital elements using Fourier analysis. II. Gaia astrometry and its combination with radial velocities
- Exoplanets detection limits using spectral cross-correlation with spectro-imaging. An analytical model applied to the case of ELT-HARMONI
- Into nonlinearity and beyond for Zernike-like wavefront sensors
- The spectrally modulated self-coherent camera (SM-SCC): Increasing throughput for focal-plane wavefront sensing
- Validation of strategies for coupling exoplanet PSFs into single-mode fibres for high-dispersion coronagraphy
- Technical description and performance of the phase II version of the Keck Planet Imager and Characterizer
- Information-theoretical Limits of Recursive Estimation and Closed-loop Control in High-contrast Imaging
- Laboratory Demonstration of Spatial Linear Dark Field Control For Imaging Extrasolar Planets in Reflected Light
- Low-order wavefront control using a Zernike sensor through Lyot coronagraphs for exoplanet imaging: II. Concurrent operation with stroke minimization
- High-contrast imager for Complex Aperture Telescopes (HiCAT): 2. Design overview and first light results
- HARMONI at ELT: A Zernike wavefront sensor for the high-contrast module -- Testbed results with realistic observation conditions
- Experimental validation of coronagraphic focal-plane wavefront sensing for future segmented space telescopes
- SPHERE on-sky performance compared with budget predictions
- Dual Purpose Lyot Coronagraph Masks for Simultaneous High-Contrast Imaging and High-Resolution Wavefront Sensing
- Experimental validation of active control of low-order aberrations with a Zernike sensor through a Lyot coronagraph
- Exoplanets Sciences with Nulling Interferometers and a Single-Mode Fiber-Fed Spectrograph
- Cascade adaptive optics with a second stage based on a Zernike wavefront sensor for exoplanet observations
- Characterisation of a turbulent module for the MITHIC high-contrast imaging testbed
- Adding colour to the Zernike wavefront sensor: Advantages of including multi-wavelength measurements for wavefront reconstruction
- Chasing the storm: Investigating the application of high-contrast imaging techniques in producing precise exoplanet light curves
- On-sky reconstruction of Keck Primary Mirror Piston Offsets using a Zernike Wavefront Sensor
- Opto-mechanical designs for the HARMONI Adaptive Optics systems
- On-sky compensation of non-common path aberrations with the ZELDA wavefront sensor in VLT/SPHERE
- Integrated coronagraphy and wavefront sensing with the PIAACMC
- Estimating low-order aberrations through a Lyot coronagraph with a Zernike wavefront sensor for exoplanet imaging
- Exoplanets through extreme optics: from PLATO to SHARK-NIR
- Mid-order wavefront control for exoplanet imaging: preliminary characterization of the segmented deformable mirror and Zernike wavefront sensor on HiCAT
- Concept validation of a high dynamic range point-diffraction interferometer for wavefront sensing in adaptive optics
- Extended Linearity in the High-Order Wavefront Sensor for the Roman Coronagraph
- Low-order wavefront control using a Zernike sensor through Lyot coronagraphs for exoplanet imaging