Title: ECE1466 Modern Optics Course Notes Part 3
1ECE-1466Modern OpticsCourse NotesPart 3
- Prof. Charles A. DiMarzio
- Northeastern University
- Spring 2002
2Diffraction
- Fresnel-Kirchoff Integral
- Fraunhofer Approximation
- Some Common Examples
- Fourier Optics
- Generalized Pupil Function
- Optical Testing
- Diffraction Gratings
- Gaussian Beams
3Fresnel-Kirchoff Integral (1)
- The Basic Equation
- An Approximation
4Fresnel-Kirchoff Integral (2)
5Paraxial Approximation
x1
x
z
6Circular Aperture, Uniform Field
7Square Aperture, Uniform Field
8No Aperture, Gaussian Field
9Fraunhoffer Examples
10Single-Mode Optical Fiber
Beam too Large (lost power at edges)
Beam too Small (lost power through cladding)
11Resolution Rayleigh Criterion
12Fourier Optics
- Revisit of the Fresnel-Kirchoff Integral
- The Fourier Transform
- Definition of the Spatial Frequencies
- Relation to Pupils
- Some Examples
- Optical Testing
- Gratings
13Fraunhofer Diffraction (1)
14Fraunhofer Diffraction (2)
15Linear Systems Approach to Imaging
x
x
Any Optical System
Exit Window
Entrance Window
Isoplanatic
16Terminology
- h is called the point spread function (PSF)
- H is called the optical transfer function (OTF)
- Magnitude is called Modulation Transfer Function
(MTF) - Phase is Phase Transfer Function (PTF)
- fx and fy are spatial frequencies
Uimage
Uobject
Uimage
Uobject
17Concepts of Fourier Optics
Any Isoplanatic Optical System
Exit Window
Exit Pupil
Entrance Pupil
Entrance Window
Scale x,y and Multiply by OTF
Fourier Transform
Fourier Transform
18Kohler Illumination
- Illumination Source in a Pupil Plane
- Incoherent Source
- Fourier Transform Has Uniform Power
- Homework Exercise
19Some Resolution Charts (1)
Edge
Point and Lines
Sinusoidal Chart
Bar Charts
20Some Resolution Charts (2)
Air Force
ISO
Bar Charts
21Radial Target and Image
Colorbar for all
Object
Image
Point-Spread Function of System
22Grating Equation
sin(qd)
5
1
4
3
0.5
sin(qi)
2
1
0
n0
-sin(qi)
-0.5
-1
-2
-1
-100
0
100
200
-3
Reflected Orders
Transmitted Orders
degrees
23Grating Fourier Analysis
Grating
Diffraction Pattern
Sinc
Slit
Convolve
Multiply
Repetition Pattern
Result
Multiply
Convolve
Apodization
Result
24Laser Tuning
Gain
f
Cavity Modes
f
qi
25Acousto-Optical Modulator
Sound Source
Absorber
26The Spherical-Gaussian Beam
- Gaussian Profile
- Rayleigh Range
- Diameter
- Radius of Curvature
- Axial Irradiance
27Visualization of Gaussian Beam
w
r
z0
Center of Curvature
28Parameters vs. Axial Distance
m4053
m4053
29Complex Radius of Curvature Physical Results
30Making a Laser Cavity
Make the Mirror Curvatures Match Those of the
Beam You Want.
31Sample Hermite Gaussian Beams
00
01
03
(01)i(10) Donut Mode
10
11
13
20
21
23
Most lasers prefer rectangular modes because
something breaks the circular symmetry.
50
51
53
from matlab program 10021.m
Note Irradiance Images rendered with g0.5