written by
the Kansas State Physics Education Research Group and
Dean A. Zollman
This resource, part of the Spectroscopy Lab Suite, illustrates the physics of a Ruby Laser. Students can create conduction and impurity bands, and electronic transitions, to match the observed spectra of the Laser. The energy of the levels and the pumping energy for the flash tube can be adjusted.
Kansas State Physics Education Research Group and D. Zollman, Ruby Laser, WWW Document, (http://web.phys.ksu.edu/vqm/software/online/vqm/html/rubylaser.html).
Kansas State Physics Education Research Group, & Zollman, D. (n.d.). Ruby Laser. Retrieved May 23, 2013, from http://web.phys.ksu.edu/vqm/software/online/vqm/html/rubylaser.html
Kansas State Physics Education Research Group, and Dean Zollman. Ruby Laser. http://web.phys.ksu.edu/vqm/software/online/vqm/html/rubylaser.html (accessed 23 May 2013).
Kansas State Physics Education Research Group, and Dean Zollman. Ruby Laser. 23 May 2013 <http://web.phys.ksu.edu/vqm/software/online/vqm/html/rubylaser.html>.
@misc{
Author = "Kansas State Physics Education Research Group and Dean Zollman",
Title = {Ruby Laser},
Volume = {2013},
Number = {23 May 2013},
Year = {}
}
%Q Kansas State Physics Education Research Group %A Dean Zollman %T Ruby Laser %U http://web.phys.ksu.edu/vqm/software/online/vqm/html/rubylaser.html %O application/shockwave
%0 Electronic Source %A Kansas State Physics Education Research Group, %A Zollman, Dean %T Ruby Laser %V 2013 %N 23 May 2013 %9 application/shockwave %U http://web.phys.ksu.edu/vqm/software/online/vqm/html/rubylaser.html
Disclaimer: ComPADRE offers citation styles as a guide only. We cannot offer interpretations about citations as this is an automated procedure. Please refer to the style manuals in the Citation Source Information area for clarifications.
The Helium Neon Laser activity explores the same principle as the Ruby Laser activity, but is complicated by the need to include transitions between additional energy levels.