Optical Reflectivity Measurements On Alloys By Compositional Modulation.

Cover Optical Reflectivity Measurements On Alloys By Compositional Modulation.
Optical Reflectivity Measurements On Alloys By Compositional Modulation.
Holbrook, Juan Alfaro, 1930-
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Moreover, this model predicts a drop in the reflectivity at the red end of the spectrum from the near 100 percent value in pure fsopper. The reflectivity measurements (see Figure 4,7) show that this dj )p does take place; from the graph marked 0/10 it can be seen that the reflectivity at low energies decreases by about 20 percent with the addition of 10 at. % nickel to copper. This is expected because the d states from nickel, local- ized in the gap between the copper d band and the Fermi surfa...ce, provide a higher density of states spread in the energy gap, allowing transi- tions to take place between these bands and the Fermi surface, thereby absorbing energy from the incident radiation. Theoretical calculations made by Ehrenreich and co-workers [31] on the Cu-Ni system and photo- emission studies of this alloy made by Spicer [32] give further sup- port to the applicability of the virtual-bound-state model to copper- rich Cu-Ni alloys.
The wavelength can be converted to energy of the radiation with the expression E = 1240/X.


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