2011SPIE eBooksRequires access

Optical Systems with Annular Pupils

Virendra N. Mahajan

Open publisher page 0 citations

Abstract

In this chapter, we discuss the imaging properties of a system with an annular pupil in a manner similar to those for a system with a circular pupil. The two-mirror astronomical telescopes discussed in Chapter 6 of Part I are a typical example of an imaging system with an annular pupil. The linear obscuration ratios of some of the well-known telescopes are 0.36 for the 200-inch telescope at Mount Palomar, 0.37 for the 84-inch telescope at the Kitt-Peak observatory, 0.5 for the telescope at the McDonald Observatory, and 0.33 for the Hubble Space Telescope. Expressions for the PSF, OTF, and encircled, ensquared, and excluded powers are given. The Strehl ratio of an aberrated system is considered and tolerances for primary aberrations are discussed. Symmetry properties of aberrated PSFs are discussed, and pictures of the PSFs for primary aberrations are given as examples. The line of sight of an aberrated system is discussed in terms of the centroid of its PSF. Numerical results are given and compared with the corresponding results for systems with circular pupils wherever possible and appropriate.

About this research paper

What this paper is about

In this chapter, we discuss the imaging properties of a system with an annular pupil in a manner similar to those for a system with a circular pupil. The two-mirror astronomical telescopes discussed in Chapter 6 of Part I are a typical example of an imaging system with an annular pupil. The linear obscuration ratios of some of the well-known telescopes are 0.36 for the 200-inch telescope at Mount Palomar, 0.37 for the 84-inch telescope at the Kitt-Peak observatory, 0.5 for the telescope at the McDonald Observatory, and 0.33 for the Hubble Space Telescope. Expressions for the PSF, OTF, and encircled, ensquared, and excluded powers are given. The Strehl ratio of an aberrated system is considered and tolerances for primary aberrations are discussed. Symmetry properties of aberrated PSFs are discussed, and pictures of the PSFs for primary aberrations are given as examples. The line of sight of an aberrated system is discussed in terms of the centroid of its PSF. Numerical results are given and compared with the corresponding results for systems with circular pupils wherever possible and appropriate.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In this chapter, we discuss the imaging properties of a system with an annular pupil in a manner similar to those for a system with a circular pupil. The two-mirror astronomical telescopes discussed in Chapter 6 of Part I are a typical example of an imaging system with an annular pupil. The linear obscuration ratios of some of the well-known telescopes are 0.36 for the 200-inch telescope at Mount Palomar, 0.37 for the 84-inch telescope at the Kitt-Peak observatory, 0.5 for the telescope at the McDonald Observatory, and 0.33 for the Hubble Space Telescope. Expressions for the PSF, OTF, and encircled, ensquared, and excluded powers are given. The Strehl ratio of an aberrated system is considered and tolerances for primary aberrations are discussed. Symmetry properties of aberrated PSFs are discussed, and pictures of the PSFs for primary aberrations are given as examples. The line of sight of an aberrated system is discussed in terms of the centroid of its PSF. Numerical results are given and compared with the corresponding results for systems with circular pupils wherever possible and appropriate.

Key concepts: Primary mirror, Strehl ratio, Telescope, Physics, Exit pupil, Observatory, Optics, Entrance pupil

Related papers

Back to paper searchBrowse research topicsOriginal source
Optical Systems with Annular Pupils — Research Paper | ScholarLens