Difference between revisions of "Mapping diamond surfaces using interference"

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Using [[Maxwell's Equations]] we can find solutions for a travelling wave comprised of two perpindicular oscillating electric and magnetic fields, whose direction can be giving by the Poynting vector.
 
Using [[Maxwell's Equations]] we can find solutions for a travelling wave comprised of two perpindicular oscillating electric and magnetic fields, whose direction can be giving by the Poynting vector.
 
[image of EM wave here]
 
[image of EM wave here]
[[Image:emwave.jpg|thumb|An Electromagnetic Wave! (courtesy of [http://scienceworld.wolfram.com/physics/MichelsonInterferometer.html]]]
+
[[Image:emwave.jpg|thumb|An Electromagnetic Wave! (courtesy of [http://www.mtholyoke.edu/~mlyount/MySites/ForensicSpectroscopy/Vocab.html]]]
  
 
What is light?
 
What is light?

Revision as of 03:08, 14 March 2007

This page represents a ongoing project dealing with using interference patterns to map the surface of a diamond wafer. Since this is my first page, you'll have to excuse any blatant errors that I do not pick up on immediately. Currently this page will represent my work with Dr. Richard Jones on an approximation to the beam splitter featured in the Michelson interferometer. I will start by giving a brief introduction to electromagnetic radiation, then move on to the approximation itself (including graphs,etc.). I will hopefully have this up and running by next Wednesday.


Electromagnetic Radiation

Using Maxwell's Equations we can find solutions for a travelling wave comprised of two perpindicular oscillating electric and magnetic fields, whose direction can be giving by the Poynting vector. [image of EM wave here]

An Electromagnetic Wave! (courtesy of [1]

What is light?


The Michelson Interferometer

File:MichIntPic.jpg
A Michelson Interferometer! Courtesy of [2]

What is a Michelson interferometer?

A simplistic approximation

File:Phase.fig
A Graph of the Phase shift


Maxwell's Equations

But, what if I need to make formulas? I have no idea what that will look like, but let's try it. We can also do vector equations, such as Gauss's Law

(1)

Next let's make some chapter headings.

Chapter 1

Chapter 2

Chapter 3

Chapter 4