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Improving vector vortex waveplates for high-contrast coronagraphy

delete2013-03-28
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OA
AI
S
Sarik R. Nersisyan *
N
Nelson V. Tabiryan
D
Dimitri Mawet
E
Eugene Serabyn
DOI:10.1364/OE.21.008205delete
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Abstract

Abstract

En 中文
Vector vortex waveplates (VVWs) open the door to new techniques in stellar coronagraphy and optical communications, but the performance of currently available liquid-crystal-polymer-based VVWs tends to be limited by defects in the axial region of the vortex pattern. As described here, several steps allow for a reduction in the size of such axial defects, including the use of photoalignment materials with high photosensitivity and reversible response, and a reduction in exposure energy. Moreover, redistributing the writing beam's intensity from the axial region to its periphery (using a VVW) allows the production of large area VVWs with a small defect area. Finally, using VVWs as linear to axial polarization converters allows producing VVWs of higher topological charge, while also reducing the photoalignment time to a few minutes. These steps have allowed the fabrication of VVWs with topological charges of 1 and 2 with central defect sizes below 3 mu m. (C)2013 Optical Society of America
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Journal

Optics Express cover
Optics Express
IF:
3.3
Papers:
6.1W
Citations:
14.3W

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European Southern Observatory cover
European Southern Observatory
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national aeronautics & space administration (nasa)
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B
beam engineering for advanced measurements co.
Scholars:
37
Papers: 30
Citations: 0
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