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Lectures

Teachers Katia Gallo (gallo@kth.se) and Anna Burvall (anna.burvall@biox.kth.se).

Lecture schedule check the course schedule.

Table of contents The table below lists the topics covered by each lecture and their relationship to the problem classes (calculation exercises) accompanying the course.

Lecture no Book chapter Topics Problem class 1

1, 2:1-9, 3:2-3, 3:6

Introduction, waves in general, wave equations, electromagnetic waves

1

2

3:5, 4:1-7, 4:9

Light in matter, reflection and refraction, Fresnel equations

1

3

5:1-2

Intro geometrical optics, paraxial approximation, spherical refracting surface, thin lens

2

4

5:3-66:1, 6:3.2

Systems of lenses, aperture and field stops, thick lenses, dispersion and achromats.

3

5 5:7 Optical instruments. Field lens concept. 3 6

5.76:2-3 (5.8)

Optical instruments continued. Aberrations, optical design.

4

7

78:1-3 (11)¶ Superposition of waves, beats and group velocity, Fourier analysis

Polarisation and birefringence.

45

8

8:1-67-12, 7:1-3 (11)

Polarisation and birefringence(cont'd). Superposition of waves, beats and group velocity.

54

9

8:7-12, 9:1-3

Polarisation (cont'd). Introduction toIntroduction to interference, Young's double slit interference .

56

10

9:4-7, 10:1

Interference (cont'd). Introduction to diffraction, Near and Far fieldometers. Multibeam interference

6

11

10:1-2, 11

Introduction to diffraction. Fraunhofer diffraction, optical resolution, diffraction gratings, Fourier optics

7 – 8

12

10:3, 13:3

Fresnel diffraction, Holography

7 – 8

13

12

Holography. Coherence theory

7 - 8

Week 43 Trial exam 9