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提供: ComplexRI: Manual
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<div id="Input05"  style="font-size: 150%;"> ⑤Select the column of your data  </div>
<div id="Input05"  style="font-size: 150%;"> ⑤Select the column of your data  </div>
: Please input the column number of the data you want to analyze in your ATR-IR file.  
: Please input the column number of the data you want to analyze in your ATR-IR file.  
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: [[File:manual_input5.png|500px]]
: [[File:manual_input5.png|500px]]


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<div id="Input06"  style="font-size: 150%;"> ⑥Input the fitting range </div>
<div id="Input06"  style="font-size: 150%;"> ⑥Input the fitting range </div>
: Please input the frequency range (in wavenumber) you want to perform the fitting. ComplexRI will fit the data only inside the range you input here.
: Please input the frequency range (in wavenumber) you want to perform the fitting. ComplexRI will fit the data only inside the range you input here.
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: Please select the substrate you used in the ATR-IR experiment. Here, we prepare the three substrates often used: Diamond(Refractive Index = 2.38), Zinc selenide(Refractive Index = 2.40) and Germanium(Refractive Index = 4.0).
: Please select the substrate you used in the ATR-IR experiment. Here, we prepare the three substrates often used: Diamond(Refractive Index = 2.38), Zinc selenide(Refractive Index = 2.40) and Germanium(Refractive Index = 4.0).
: You can also input the refractive index of your substrate by selecting Others in the list.
: You can also input the refractive index of your substrate by selecting Others in the list.
:[[File:manual_input7_other.png|500px]]


[[File:ATR-IR.png|500px]]
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:This value is the <math>n_1</math> in the above picture.
<div id="Input08"  style="font-size: 150%;"> ⑧Incident angle in ATR-IR </div>
:Here, we prepare the three substrates often used.
: Please input the incident angle in your ATR-IR experiment. (Default=45 degree)
:[[File:manual_input7.png|500px]]
:So, if there is the substrate you use, you only have to select the substrate name. It gives the corresponding refractive index. The values are written in the parenthesis next to the substrate name.


:Otherwise, you should select other and, input the refractive index manually.
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:[[File:manual_input7_other.png|500px]]
<div id="Input09"  style="font-size: 150%;"> ⑨Refractive index of target sample in non-resnance region </div>
:You can also use this option, when you want to input the refractive index strictly against the three substrates often used.
: Please input the refractive index of the target sample non-resnance region. (Default=1.360)
: The refractive index of target sample in non-resnance region should be determined before the fitting procedure. In the reference paper, we use the refractive index values in the visible regions to fit Cauchy's equation.
:: <math>n = A + \frac{B}{{\lambda}^2} + \frac{C}{{\lambda}^4}</math>
: The obtained parameters <math>A, B, C</math> were used to evaluate the refractive index at 5000 <math> cm^-1 </math>.


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<div id="Input08"  style="font-size: 150%;">08:Angle of incidence of IR light</div>
<div id="Input10"  style="font-size: 150%;"> ⑩The tolerance of fitting ?</div>
:You should input the angle of incidence of IR light.
: Please input the tolerance of fitting procedure. The fitting will be finished when the calculated residual is less than this value.   
[[File:ATR-IR.png|500px]]
: The details are written in the<u> [[explanation01|explanation01]] </u>of<u> [[En/ComplexRI#Internal processing |Internal processing]]</u>.
:That is <math>{\theta}_i</math>in the above picture.
:<span style color="red">Notice!! Fitting can not finish if this value is too small. </span>
:The default is set to 45 degree.
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<div id="Input09"  style="font-size: 150%;">09:Refractive index without dispersion</div>
: You should input the refractive index without dispersion. This value is derived from the cauchys equation showed below.
:<math>n = A + \frac{B}{{\lambda}^2} + \frac{C}{{\lambda}^4}</math>
This value usually converges in the IR region. So, you can get this value by substitution of appropriate<math>\lambda</math> and <math>A, B, C</math>parameter corresponding to the substrate for the above equation.
:The default is set to 1.360.
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<div id="Input10" style="font-size: 150%;">10:How strictly you fit the Reflectance Spectra ?</div>
:The value input here is used to judge if the fitting of reflectance spectra should finish. The detail is written in the<u> [[explanation01|explanation01]] </u>of<u> [[En/ComplexRI#Internal processing |Internal processing]]</u>.
:The defalut is set to 0.02.
:<span style color="red">notice!! If this value is too small, fitting cannot finish.</span>


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2021年12月20日 (月) 09:34時点における版

Toppage.png

This is the typical snapshot of the input of ComplexRI. Each part will be explained in the following.


①Title
Please input the title of your job (alphabet). The output results of ComplexRI will be saved in the excel format with the name @Title.xlsx

②File
Please upload the ATR-IR experimental data in this part. The inside should be like the following.
NewFILE01.png
There are two rules for the format of input file.
(1). The format of input file must be txt.
(2). The columns are separated by the space.

③The order of data
Please select the sort order of your data.
Ascending order: The frequencies in the input file are in ascending order (left picture). (Default)
Descending order: The frequencies in the input file are in descending order (right picture).
NewFILE01.pngNewFILE04.png

④Reflectance or Absorptance?
Please select the type of your ATR-IR data.
Reflectance(%): The Reflectance of ATR-IR spectra in the value of percentage. (Default)
Reflectance: The Reflectance of ATR-IR spectra.
Absorptance: The Absorptance of ATR-IR spectra.
The relationships between each data are

⑤Select the column of your data
Please input the column number of the data you want to analyze in your ATR-IR file.
Wavenumber: The column number of wavenumber in your input file. (Default: 1)
ATR-IR data: The column number of ATR-IR data in your input file. (Default: 2)
For example, an input file like following can be uploaded and column 1 and column 5 can be selected for analyzing.
NewFILE03.png
Manual input5.png

⑥Input the fitting range
Please input the frequency range (in wavenumber) you want to perform the fitting. ComplexRI will fit the data only inside the range you input here.
minimum wavenumber: The lower boundary of wavenumber. (Default: 1636)
maximum wavenumber: The upper boundary of wavenumber. (Default: 1863)

⑦Select the Substrate
Please select the substrate you used in the ATR-IR experiment. Here, we prepare the three substrates often used: Diamond(Refractive Index = 2.38), Zinc selenide(Refractive Index = 2.40) and Germanium(Refractive Index = 4.0).
You can also input the refractive index of your substrate by selecting Others in the list.
Manual input7 other.png

⑧Incident angle in ATR-IR
Please input the incident angle in your ATR-IR experiment. (Default=45 degree)

⑨Refractive index of target sample in non-resnance region
Please input the refractive index of the target sample non-resnance region. (Default=1.360)
The refractive index of target sample in non-resnance region should be determined before the fitting procedure. In the reference paper, we use the refractive index values in the visible regions to fit Cauchy's equation.
The obtained parameters were used to evaluate the refractive index at 5000 .

⑩The tolerance of fitting ?
Please input the tolerance of fitting procedure. The fitting will be finished when the calculated residual is less than this value.
The details are written in the explanation01 of Internal processing.
Notice!! Fitting can not finish if this value is too small.

11:How to set the parameter of the fitting function
Here, you can select whether you decide the parameter of fitting functions. We use a set of Lorentz functions for fitting of Reflectance spectra as mentioned in the

explanation01 of Internal processing . Fitting function is like below.

The default is set to “NO” like below.
2Newmanual input11 no.png
In this pattern, the parameters are assigned automatically.
If you select “YES” like below.
Manual input11 yes.png
The new input fields are set, and you should give the number of Lorentz functions like below. The maximum of the number is 7.
Manual input11 yes num.png
Above, the number is set to 1. So, the one set of three parameters of Lorentz function is need to input. init_A1, init_N1 and init_G1 are the amplitude, peak wavenumber, and bandwidth of Lorentz function, respectively.