written by
the University of Chicago, Department of Physics
Students measure infra-red transmission through silicon, germanium and gallium arsenide. The band gap energies are measured and transitions are characterized as direct or indirect.
<a href="https://advlabs.aapt.org/items/detail.cfm?ID=7815">University of Chicago, Department of Physics. Infra-red Absorption in Semi-conductors. 2008.</a>
University of Chicago, Department of Physics, Infra-red Absorption in Semi-conductors (2008), <https://www.compadre.org/Repository/document/ServeFile.cfm?ID=7815&DocID=632>.
University of Chicago, Department of Physics. (2008). Infra-red Absorption in Semi-conductors. Retrieved September 7, 2024, from https://www.compadre.org/Repository/document/ServeFile.cfm?ID=7815&DocID=632
University of Chicago, Department of Physics. Infra-red Absorption in Semi-conductors. 2008. https://www.compadre.org/Repository/document/ServeFile.cfm?ID=7815&DocID=632 (accessed 7 September 2024).
University of Chicago, Department of Physics. Infra-red Absorption in Semi-conductors. 2008. 7 Sep. 2024 <https://www.compadre.org/Repository/document/ServeFile.cfm?ID=7815&DocID=632>.
@misc{
Author = "University of Chicago, Department of Physics",
Title = {Infra-red Absorption in Semi-conductors},
Volume = {2024},
Number = {7 September 2024},
Year = {2008}
}
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%0 Electronic Source %A University of Chicago, Department of Physics, %D 2008 %T Infra-red Absorption in Semi-conductors %V 2024 %N 7 September 2024 %9 application/pdf %U https://www.compadre.org/Repository/document/ServeFile.cfm?ID=7815&DocID=632
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