Low-Order Aberrations in Band-limited Lyot Coronagraphs
We study the way Lyot coronagraphs with unapodized entrance pupils respond to small, low-order phase aberrations. This study is applicable to ground-based adaptive optics coronagraphs operating at 90% and higher Strehl ratios, as well as to some space-based coronagraphs with intrinsically higher Str...
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Published in | The Astrophysical journal Vol. 634; no. 2; pp. 1416 - 1422 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
Chicago, IL
IOP Publishing
01.12.2005
University of Chicago Press |
Subjects | |
Online Access | Get full text |
ISSN | 0004-637X 1538-4357 |
DOI | 10.1086/466507 |
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Abstract | We study the way Lyot coronagraphs with unapodized entrance pupils respond to small, low-order phase aberrations. This study is applicable to ground-based adaptive optics coronagraphs operating at 90% and higher Strehl ratios, as well as to some space-based coronagraphs with intrinsically higher Strehl ratio imaging. We utilize a second-order expansion of the monochromatic point-spread function (written as a power spectrum of a power series in the phase aberration over clear aperture) to derive analytical expressions for the response of a "band-limited" Lyot coronagraph (BLC) to small, low-order, phase aberrations. The BLC possesses a focal plane mask with an occulting spot whose opacity profile is a spatially band-limited function rather than a hard-edged, opaque disk. The BLC is, to first order, insensitive to tilt and astigmatism. Undersizing the stop in the reimaged pupil plane (the Lyot plane) following the focal plane mask can alleviate second-order effects of astigmatism, at the expense of system throughput and angular resolution. The optimal degree of such undersizing depends on individual instrument designs and goals. Our analytical work engenders physical insight and complements existing numerical work on this subject. Our methods can be extended to treat the passage of higher order aberrations through band-limited Lyot coronagraphs by using our polynomial decomposition or an analogous Fourier approach. |
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AbstractList | We study the way Lyot coronagraphs with unapodized entrance pupils respond to small, low-order phase aberrations. This study is applicable to ground-based adaptive optics coronagraphs operating at 90% and higher Strehl ratios, as well as to some space-based coronagraphs with intrinsically higher Strehl ratio imaging. We utilize a second-order expansion of the monochromatic point-spread function (written as a power spectrum of a power series in the phase aberration over clear aperture) to derive analytical expressions for the response of a "band-limited" Lyot coronagraph (BLC) to small, low-order, phase aberrations. The BLC possesses a focal plane mask with an occulting spot whose opacity profile is a spatially band-limited function rather than a hard-edged, opaque disk. The BLC is, to first order, insensitive to tilt and astigmatism. Undersizing the stop in the reimaged pupil plane (the Lyot plane) following the focal plane mask can alleviate second-order effects of astigmatism, at the expense of system throughput and angular resolution. The optimal degree of such undersizing depends on individual instrument designs and goals. Our analytical work engenders physical insight and complements existing numerical work on this subject. Our methods can be extended to treat the passage of higher order aberrations through band-limited Lyot coronagraphs by using our polynomial decomposition or an analogous Fourier approach. |
Author | Soummer, Rémi Sivaramakrishnan, Allic V Sivaramakrishnan, Anand Makidon, Russell B Lloyd, James P Oppenheimer, Ben R |
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Cites_doi | 10.1117/12.506485 10.1051/0004-6361:20021573 10.1086/344751 10.1364/JOSA.71.000075 10.1086/379872 10.1117/12.552211 10.1086/427923 10.1086/431436 10.1364/JOSA.66.000207 10.1093/mnras/99.8.580 10.1086/320444 10.1086/377689 10.1086/345826 10.21236/ADA479065 10.1086/431460 10.1051/eas:2003071 10.1051/0004-6361:20030278 10.1051/0004-6361:20020419 10.1086/339625 10.1086/427719 10.1086/319110 10.1086/323494 |
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Title | Low-Order Aberrations in Band-limited Lyot Coronagraphs |
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