File:Rubidium Raman Cell Absorption Modeling.zip: Difference between revisions
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(This Matlab .m file function was the one used in the 2012 Rb Raman index modification experiment to predict/compare to experimental absorption curves. You enter the percent pumping for each isotope and the thermocouple voltage (temperature) and it spit...) |
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This Matlab .m file function was the one used in the 2012 Rb Raman index modification experiment to predict/compare to experimental absorption curves. You enter the percent pumping for each isotope and the thermocouple voltage (temperature) and it spits out a figure of what the absorption in the cell should look like, showing saturation with higher temperature. May be useful if this experiment is pursued again in the future. |
This Matlab .m file function was the one used in the 2012 Rb Raman index modification experiment to predict/compare to experimental absorption curves. You enter the percent pumping for each isotope and the thermocouple voltage (temperature) and it spits out a figure of what the absorption in the cell should look like, showing saturation with higher temperature. May be useful if this experiment is pursued again in the future. Note: zip file also includes a function (Calc_Density.m) used by the main program Abs_Curves10b.m. |
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Latest revision as of 19:22, 7 August 2015
This Matlab .m file function was the one used in the 2012 Rb Raman index modification experiment to predict/compare to experimental absorption curves. You enter the percent pumping for each isotope and the thermocouple voltage (temperature) and it spits out a figure of what the absorption in the cell should look like, showing saturation with higher temperature. May be useful if this experiment is pursued again in the future. Note: zip file also includes a function (Calc_Density.m) used by the main program Abs_Curves10b.m.
-zjs
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current | 19:20, 7 August 2015 | (5 KB) | Zjsimmons (talk | contribs) | This Matlab .m file function was the one used in the 2012 Rb Raman index modification experiment to predict/compare to experimental absorption curves. You enter the percent pumping for each isotope and the thermocouple voltage (temperature) and it spit... |
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