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The vector-Apodizing Phase Plate (vAPP) is a pupil-plane coronagraph that manipulates phase to create dark holes in the stellar PSF. The phase is induced on the circular polarization states through the inherently achromatic geometric phase…

天体物理仪器与方法 · 物理学 2021-01-08 Steven P. Bos , David S. Doelman , Kelsey L. Miller , Frans Snik

One of the main challenges for the direct imaging of planets around nearby stars is the suppression of the diffracted halo from the primary star. Coronagraphs are angular filters that suppress this diffracted halo. The Apodizing Phase Plate…

天体物理仪器与方法 · 物理学 2014-12-03 G. P. P. L. Otten , F. Snik , M. A. Kenworthy , M. N. Miskiewicz , M. J. Escuti

Over the last decade, the vector-apodizing phase plate (vAPP) coronagraph has been developed from concept to on-sky application in many high-contrast imaging systems on 8-m class telescopes. The vAPP is an geometric-phase patterned…

The direct-write technology for liquid-crystal patterns allows for manufacturing of extreme geometric phase patterned coronagraphs that are inherently broadband, e.g. the vector Apodizing Phase Plate (vAPP). We present on-sky data of a…

天体物理仪器与方法 · 物理学 2017-09-29 David S. Doelman , Frans Snik , Nathaniel Z. Warriner , Michael J. Escuti

Phase apodization coronagraphs are implemented in a pupil plane to create a dark hole in the science camera focal plane. They are successfully created as "Apodizing Phase Plates" (APPs) using classical optical manufacturing, and as…

天体物理仪器与方法 · 物理学 2022-05-11 Matthew A. Kenworthy , Johanan L. Codona , Frans Snik

The apodizing phase plate (APP) is a solid-state pupil optic that clears out a D-shaped area next to the core of the ensuing PSF. To make the APP more efficient for high-contrast imaging, its bandwidth should be as large as possible, and…

天体物理仪器与方法 · 物理学 2015-06-05 Frans Snik , Gilles Otten , Matthew Kenworthy , Matthew Miskiewicz , Michael Escuti , Christopher Packham , Johanan Codona

We describe the design, laboratory manufacture, and on-sky testing of the grating vector apodizing phase plate (gvAPP) coronagraph for the Enhanced Resolution Imager and Spectrograph (ERIS) on the Very Large Telescope. We used both…

The design of liquid-crystal diffractive phase plate coronagraphs for ground-based and space-based high-contrast imaging systems is limited by the trade-off between spectral bandwidth and polarization leakage. We demonstrate that by…

天体物理仪器与方法 · 物理学 2020-03-13 David S. Doelman , Emiel H. Por , Garreth Ruane , Michael J. Escuti , Frans Snik

In this article we show that the vector-Apodizing Phase Plate (vAPP) coronagraph can be designed such that the coronagraphic point spread functions (PSFs) can act as a wavefront sensor to measure and correct the (quasi-)static aberrations,…

High contrast imaging is the primary path to the direct detection and characterization of Earth-like planets around solar-type stars; a cleverly designed internal coronagraph suppresses the light from the star, revealing the elusive…

For direct imaging of exoplanets, a stellar coronagraph helps to remove the image of an observed bright star by attenuating the diffraction effects caused by the telescope aperture of diameter D. The Dual Zone Phase Mask (DZPM) coronagraph…

天体物理仪器与方法 · 物理学 2015-06-03 M. N'Diaye , K. Dohlen , S. Cuevas , R. Soummer , C. Sánchez-Pérez , F. Zamkotsian

Coronagraphy is a powerful technique to achieve high contrast imaging and hence to image faint companions around bright targets. Various concepts have been used in the visible and near-infrared regimes, while coronagraphic applications in…

The vector Apodizing Phase Plate (vAPP) is a pupil plane coronagraph that suppresses starlight by forming a dark hole in its point spread function (PSF). The unconventional and non-axisymmetrical PSF arising from the phase modification…

The vector vortex coronagraph is an instrument designed for direct detection and spectroscopy of exoplanets over a broad spectral range. Our team is working towards demonstrating contrast performance commensurate with imaging temperate,…

天体物理仪器与方法 · 物理学 2020-12-15 Garreth Ruane , Eugene Serabyn , Camilo Mejia Prada , Wesley Baxter , Eduardo Bendek , Dimitri Mawet , A J Eldorado Riggs

Broadband coronagraphy with deep nulling and small inner working angle has the potential of delivering images and spectra of exoplanets and other faint objects. In recent years, many coronagraphic schemes have been proposed, the most…

天体物理仪器与方法 · 物理学 2015-06-16 R. Errmann , S. Minardi , T. Pertsch

The detection of molecular species in the atmospheres of earth-like exoplanets orbiting nearby stars requires an optical system that suppresses starlight and maximizes the sensitivity to the weak planet signals at small angular separations.…

天体物理仪器与方法 · 物理学 2017-08-22 Garreth Ruane , Dimitri Mawet , Jeffrey Jewell , Stuart Shaklan

In recent years, new coronagraphic schemes have been proposed, the most promising being the optical vortex phase mask coronagraphs. In our work, a new scheme of broadband optical scalar vortex coronagraph is proposed and characterized…

天体物理仪器与方法 · 物理学 2015-06-19 Ronny Errmann , Stefano Minardi , Thomas Pertsch

Several coronagraph designs have been proposed over the last two decades to directly image exoplanets. Among these designs, the vector vortex coronagraphs provide theoretically perfect starlight cancellation along with small inner working…

天体物理仪器与方法 · 物理学 2017-11-29 Kevin Fogarty , Laurent Pueyo , Johan Mazoyer , Mamadou N'Diaye

In this paper, after briefly reviewing the theory of vectorial vortices, we describe our technological approach to generating the necessary phase helix, and report results obtained with the first optical vectorial vortex coronagraph (OVVC)…

天体物理仪器与方法 · 物理学 2010-11-02 D. Mawet , E. Serabyn , K. Liewer , Ch. Hanot , S. McEldowney , D. Shemo , N. O'Brien

The specification of polishing requirements for the optics in coronagraphs dedicated to exo-planet detection requires careful and accurate optical modelling. Numerical representations of the propagation of aberrations through the system as…

天体物理仪器与方法 · 物理学 2011-11-07 Laurent Pueyo , N. Jeremy Kasdin , Stuart Shaklan
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