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Modern Optics Podcast
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Modern Optics Podcast

Author: Peter Beyersdorf

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Recorded class lectures from Peter Beyersdorf's Physics 158 (Modern Optics) class at San Jose State University from the Spring of 2008. Recordings will be added twice a week on Tuesdays and Thursdays.
21 Episodes
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Modulators

Modulators

2008-05-0601:00:14

We look at the behavior of electrooptic devices as amplitude and phase modulators.
Birefringence

Birefringence

2008-05-0101:10:20

We look at birefringence in crystals and discuss optical activity and the Faraday effect.
Polarization of light

Polarization of light

2008-04-2456:42

We look at the vectorial nature of light and describe polarization in terms of Jones vectors
Diffraction from a double slit is discussed. The convolution theorem is presented and the grating equation is derived. (incomplete)
More Diffraction

More Diffraction

2008-04-1053:17

We look at the relationship between far-field (Fraunhofer) diffraction and the Fourier transform, and explore the diffraction pattern of a uniformly illuminated circular aperture, which leads to the Rayleigh criterion for resolution in an optical system.
Diffraction

Diffraction

2008-04-0801:15:07

We look at Fraunhofer diffraction from a slit and for a Gaussian beam. We use Huygen's principle and also discuss Babinet's principle
More Fiber Optics

More Fiber Optics

2008-04-0358:59

We discuss unconventional types of fibers including photonic crystal fibers
Fiber Optics

Fiber Optics

2008-04-0101:17:20

We introduce the basic principles and parameters associated with fiber optics
Coherence

Coherence

2008-03-2057:13

We introduce the coherence function and look at the relationship between coherence, bandwidth and linewidth.
Fourier Analysis

Fourier Analysis

2008-03-1801:15:55

Fourier Series are introduced and are generalized to the Fourier sine and cosine tansform
Fabry-Perot Interferometer

Fabry-Perot Interferometer

2008-03-1301:16:09

We look at the transmission of a Fabry-Perot interferometer and discuss properties like the free spectral range, finesse and linewidth.
Michelson Interferometer

Michelson Interferometer

2008-02-2801:15:35

We investigate the Michelson interferometer and the relationship between physical parameters and the interference term.
Two beam interferencde

Two beam interferencde

2008-02-2601:14:37

We look at the interference term present when two waves interfere and discuss the effect coherence has on fringe visibility
Group and Phase velocity

Group and Phase velocity

2008-02-2101:15:09

We look at the difference between group velocity and phase velocity in a dispersive material and introduce the Fourier transform
Superposition

Superposition

2008-02-1901:14:48

We investigate the behavior of multiple waves that overlap in space and time.
Wave equation

Wave equation

2008-02-1401:10:12

We look at Maxwell's equations and use them to find the wave equation for electromagnetic radiation. We then investigate various solutions to the wave equation.
Thick Lenses

Thick Lenses

2008-02-1401:14:54

We introduce thick lenses and discuss parameters necessary to describe them. We go on to introduce ray matrices.
Ray Matrices

Ray Matrices

2008-02-0701:13:24

We look at methods for solving imaging problems using ray matrices.
Thin Lenses

Thin Lenses

2008-02-0501:16:58

We introduce the thin lens equation and the lens makers formula and the concept of ray tracing.
We Introduce Huygen's principle and Fermat's principle and use them to derive Snell's law and the law of reflection.
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