Improved High Contrast Imaging with On-Axis Telescopes using a Multi-Stage Vortex Coronagraph
arXiv:1103.1909 · doi:10.1364/OL.36.001506
Abstract
The vortex coronagraph is one of the most promising coronagraphs for high contrast imaging because of its simplicity, small inner working angle, high throughput, and clear off-axis discovery space. However, as with most coronagraphs, centrally-obscured on-axis telescopes degrade contrast. Based on the remarkable ability of vortex coronagraphs to move light between the interior and exterior of pupils, we propose a method, based on multiple vortices, that, without sacrificing throughput, reduces the residual light leakage to (a/A)^n, with n >=4, and a and A being the radii of the central obscuration and primary mirror, respectively. This method thus enables high contrasts to be reached even with an on-axis telescope.
3 pages, 2 figures
References in corpus (1)
Cited by in corpus (22)
- DARKNESS: A Microwave Kinetic Inductance Detector Integral Field Spectrograph for High-Contrast Astronomy
- Characterizing the performance of the NIRC2 vortex coronagraph at W.M. Keck Observatory
- Speckle suppression and companion detection using coherent differential imaging
- Apodized phase mask coronagraphs for arbitrary apertures. II. Comprehensive review of solutions for the vortex coronagraph
- Lyot-plane phase masks for improved high-contrast imaging with a vortex coronagraph
- A Family of Phase Masks For Broadband Coronagraphy Example of the Wrapped Vortex Phase Mask Theory and Laboratory demonstration
- Polynomial Apodizers for Centrally Obscured Vortex Coronagraphs
- Patterned liquid-crystal optics for broadband coronagraphy and wavefront sensing
- Multi-stage four-quadrant phase mask: achromatic coronagraph for space-based and ground-based telescopes
- An H-band Vector Vortex Coronagraph for the Subaru Coronagraphic Extreme-Adaptive Optics System
- Apodized vortex coronagraph designs for segmented aperture telescopes
- Implementing focal-plane phase masks optimized for real telescope apertures with SLM-based digital adaptive coronagraphy
- Minimization of non common path aberrations at the Palomar telescope using a self-coherent camera
- Resolving the delta Andromedae spectroscopic binary with direct imaging
- High-contrast Demonstration of an Apodized Vortex Coronagraph
- A Coronagraph with a Sub- IWA and a Moderate Spectral Bandwidth
- Spectroscopic fourth-order coronagraph for the characterization of terrestrial planets at small angular separations from host stars
- Isolation of phase edges using off-axis q-plate filters
- Design and experimental test of an optical vortex coronagraph
- High-contrast imaging of tight resolved binaries with two vector vortex coronagraphs in cascade with the Palomar SDC instrument
- Zernike amplitude pupil apodization for vortex coronagraphy with obscured apertures
- Extinction controlled adaptive phase-mask coronagraph