aberrations (spec) Flashcards

1
Q

describe the importance of the relationship between paraxial and marginal rays for spherical aberration

A

For a lens with spherical aberration, the best approximation to use for the focal length is the distance at which the difference between the paraxial and marginal rays is the smallest.

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2
Q

outline the basis of paraxial theory (1)

A

paraxial and monochromatic assumptions allow idealised point focuses

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3
Q

what is the best practical case for spherical aberation

A

F1/F2 = 6

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4
Q

define an optical coma (1)

A

Coma is an aberration which causes rays from an off-axis point of light in the object plane to create a trailing “comet-like” blur directed away from the optic axis

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5
Q

define an optical stop (1)

how is it related to aberrations (1)

A
  • something in the optical system that limits the diameter of the pencil (eg. pupil)
  • non paraxial rays are a major source of aberrations -> using a stop can improve image quality (a reduced aperture eliminated peripheral rays)
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6
Q

define oblique astigmatism

A

Oblique astigmatism is an aberration of off-axis rays that causes radial and tangential lines in the object plane to focus sharply at different distances in the image space.

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7
Q

outline the optimal fitting process of spectacles (3)

A
  • bi-aspheric lenses have one aspheric surface and one atoric surface to optimise the performance of both meridians
  • patient has to tilt head back so that lens is perpendicular to the floor to mark pupil center
  • > optical centre will drop 1mm for every 2° of tilt

nb: incorrectly fitted lens will result in aberrations due to the eye being off-axis in the optical system

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