Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations •...

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Aberrations Chromatic is due to the fact that the refractive index of lenses, etc. varies with wavelength; therefore, focal lengths, imaging conditions, etc. are wavelength-dependent Geometrical are due to the deviation of non-paraxial rays from the approximations we have used so far to derive focal lengths, imaging conditions, etc.; therefore, rays going through imaging systems typically do not focus perfectly but instead scatter around the “paraxial” (or “Gaussian”) focus

Transcript of Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations •...

Page 1: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with

Aberrations

• Chromatic– is due to the fact that the refractive index of

lenses, etc. varies with wavelength; therefore, focal lengths, imaging conditions, etc. are wavelength-dependent

• Geometrical– are due to the deviation of non-paraxial rays

from the approximations we have used so far to derive focal lengths, imaging conditions, etc.; therefore, rays going through imaging systems typically do not focus perfectly but instead scatter around the “paraxial” (or “Gaussian”) focus

Page 2: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with

ChromaticAberration

(aka dispersion)

Page 3: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with

Geometrical aberrations

Page 4: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with

Primary (Seidel) aberrations

Spherical Coma

Astigmatism Field curvature

Distortion

Page 5: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with

Spherical

Page 6: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with

Coma

Page 7: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with

Simultaneous compensationof spherical and coma,

using the lens form factor

Page 8: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with

field curvature

astigmatism

Page 9: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with
Page 10: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with

Distortion

Page 11: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with

Exact ray-tracing

Optical design

Page 12: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with

Exact ray-tracing

ray scatter diagram ( ⇔ defocus)

Optical design

Page 13: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with

Optical design

.........S4

.........S3

0.11.0-21.6S2

0.0011.5421.6S1

0.11.0InfS0

Distance to nextelement

Index to the right

CurvatureSurfacename

10cm 10cm

0.1cm

Page 14: Aberrations - MITweb.mit.edu/2.710/Fall06/2.710-wk5-b-sl.pdf · 2005-09-03 · Aberrations • Chromatic – is due to the fact that the refractive index of lenses, etc. varies with

Features of optical design software

• Databases of common lenses and elements sold by vendors

• Simulate aberrations and ray scatter diagrams for various points along the field of the system

• Standard optical designs (e.g. achromatic doublet, Cooke triplet)

• Permit optimization of design parameters (e.g. curvature of a particular surface or distance between two surfaces) vs designated functional requirements (e.g. field curvature and astigmatism coefficients)

• Also account for diffraction by calculating the modulation transfer function (MTF)modulation transfer function (MTF) at different points along the field

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Vendors

• Optical design– Code V– Oslo– Zemax– Accos– Asap

– consultants

• Optics & opto-mechanics– Newport– Newfocus– Coherent– Opto-Sigma– Thorlabs– Edmund

– specialized shops

www.optikos.com