Published September 9, 2019 | Version Published
Book Section - Chapter Open

ExoPlanet Optics: conceptual design processes for stealth telescopes

  • 1. ROR icon California Institute of Technology
  • 2. ROR icon Optical Sciences (United States)
  • 3. ROR icon University of Arizona
  • 4. ROR icon University of New Mexico

Abstract

In this paper we examine several contrast-degrading static signature sources present in current terrestrial exoplanet Lyot Coronagraph/Telescope optical systems. These are: - Unnecessary optical surfaces, which increase cost, absorption, scatter, wavefront control and alignment issues. A suggested solution is to make every effort to investigate innovative solutions to reduce the number of optical surfaces during the early design phase. Consider free-form optics. - Diffraction from secondary support systems and classical hexagon segmented apertures, which masks the low IWA terrestrial exoplanets. A suggested mitigation is to investigate curved secondary support systems and a pinwheel architecture for the deployable primary aperture. - Polarization Fresnel and form birefringence aberrations, which distort the system PSF, introduce absorption, scatter and wavefront control issues. Mitigation is to reduce all ray-angles of incidence to a minimum, investigate zero-loss polarization compensation wavefront technology, and investigate metal thin film deposition processes required to minimize form birefringence in large-area high-reflectivity coatings. - Small-angle specular or resolved angle scattered light, which places a narrow halo of incoherent light around the base of the PSF. There is no requirement on mirror smooth-surface scatter. Investigate the physical source of the small angle scatter and develop mirror polishing and thin film deposition processes to minimize scatter.

Additional Information

© 2019 Society of Photo-Optical Instrumentation Engineers (SPIE). This work was funded in part by NASA research grant NNX17AB29G to James Breckinridge, PI, at the James C. Wyant College of Optical Sciences, University of Arizona, Tucson AZ. Additional support provided by: Caltech, and Photon Engineering, Tucson, AZ.

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Additional details

Additional titles

Alternative title
Stealth telescopes for space and ground astronomy

Identifiers

Eprint ID
98631
Resolver ID
CaltechAUTHORS:20190913-081328146

Funding

NASA
NNX17AB29G

Dates

Created
2019-09-13
Created from EPrint's datestamp field
Updated
2021-11-16
Created from EPrint's last_modified field

Caltech Custom Metadata

Caltech groups
GALCIT
Series Name
Proceedings of SPIE
Series Volume or Issue Number
11115