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<div id="Input09" style="font-size: 150%;"> ⑨Refractive index of target sample in non-resonance region (<math> n_j^0 </math>) </div> | <div id="Input09" style="font-size: 150%;"> ⑨Refractive index of target sample in non-resonance region (<math> n_j^0 </math>) </div> | ||
: Please input the refractive index of the target sample (<math> n_j^0 </math>) in non-resonance region. (Default=1.360) | : Please input the refractive index of the target sample (<math> n_j^0 </math>) in non-resonance region. (Default=1.360) | ||
: <math> n_j^0 </math> | : The determination of <math> n_j^0 </math> and some comments about it can be found in <u> [[Theory#Fitting procedure| How to Fit the ATR-IR spectra]] </u>. | ||
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: Please input the tolerance of fitting procedure. (default: 0.02) | : Please input the tolerance of fitting procedure. (default: 0.02) | ||
: The fitting will be finished when the calculated residual is less than this value. | : The fitting will be finished when the calculated residual is less than this value. | ||
: The details are | : The details are described in <u> [[Theory#Fitting procedure| How to Fit the ATR-IR spectra]] </u>. | ||
:<span style color="red">Notice!! Fitting can not finish if this value is too small. </span> | :<span style color="red">Notice!! Fitting can not finish if this value is too small. </span> | ||
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:: <math>n_j=n_j^0+\sum_{l=1}^{l_{max}} \frac{A_l}{\nu_l-\nu-i\gamma_l}</math> | :: <math>n_j=n_j^0+\sum_{l=1}^{l_{max}} \frac{A_l}{\nu_l-\nu-i\gamma_l}</math> | ||
: where <math> n_j^0 </math> is input in ⑨. The number of Lorentz functions <math> l_{max} </math>, and the corresponding parameters <math> A_l, \nu_l, \gamma_l </math> should be determined. | : where <math> n_j^0 </math> is input in ⑨. The number of Lorentz functions <math> l_{max} </math>, and the corresponding parameters <math> A_l, \nu_l, \gamma_l </math> should be determined. | ||
: By selecting <math> No </math>, it means the initial parameters are automatically guessed by the algorithm explained in the <u>[[ | : By selecting <math> No </math>, it means the initial parameters are automatically guessed by the algorithm explained in the <u> [[Theory#Auto Fitting| Automatically determine the initial parameters in fitting procedure]] </u>. | ||
We recommend the users use the automatic mode first if they are not familiar with the determination of initial parameters. | |||
: By selecting <math> Yes </math>, you can manually set <math> l_{max} </math> and <math> A_l, \nu_l, \gamma_l </math> for each Lorentz function by yourself. The units of <math> A_l, \nu_l, \gamma_l </math> are all wavenumber. <math> l_{max} </math> is up to 5. | : By selecting <math> Yes </math>, you can manually set <math> l_{max} </math> and <math> A_l, \nu_l, \gamma_l </math> for each Lorentz function by yourself. The units of <math> A_l, \nu_l, \gamma_l </math> are all wavenumber. <math> l_{max} </math> is up to 5. | ||
: [[File:11yes.png|500px]] | : [[File:11yes.png|500px]] |
2022年1月20日 (木) 09:01時点における版
- This is the typical snapshot of the input of ComplexRI.
- The input of Complex contains two parts. The left part is the information of ATR-IR experimental data. The right part is the control parameters of the complex refractive index fitting procedure. Each part will be explained in the following.
Information of ATR-IR experiment
①ATR-IR File
- Please upload the ATR-IR experimental data in this part. The inside should be like the following.
- 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.
②The order of data
- Please select the sort order of your data.
- Ascending order: The wavenumbers in the input file are in ascending order (left picture). (Default)
- Descending order: The wavenumbers in the input file are in descending order (right picture).
③Reflectance 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
④The Substrate in ATR-IR
- Please select the substrate you used in the ATR-IR experiment. Here, we prepare the three substrates often used
- Diamond(Refractive Index = 2.38). (Default)
- Zinc selenide(Refractive Index = 2.40).
- Germanium(Refractive Index = 4.0).
- You can also input the refractive index of your substrate by selecting Others in the list.
⑤Incident angle in ATR-IR
- Please input the incident angle in your ATR-IR experiment. (Default=45 degree)
⑥Select 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.
Control parameters of ComplexRI fitting
⑦Title of your job
- 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
⑧Input 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)
⑨Refractive index of target sample in non-resonance region ()
- Please input the refractive index of the target sample () in non-resonance region. (Default=1.360)
- The determination of and some comments about it can be found in How to Fit the ATR-IR spectra .
⑩The tolerance of fitting
- Please input the tolerance of fitting procedure. (default: 0.02)
- The fitting will be finished when the calculated residual is less than this value.
- The details are described in How to Fit the ATR-IR spectra .
- Notice!! Fitting can not finish if this value is too small.
⑪ Manually set the initial parameters
- Please select whether to set the initial fitting parameters by yourself.
- No: Automatically done by the algorithm (Default)
- Yes: Manually set the initial parameters by users.
- In the fitting, we use a set of Lorentz functions to represent the complex refractive index
- where is input in ⑨. The number of Lorentz functions , and the corresponding parameters should be determined.
- By selecting , it means the initial parameters are automatically guessed by the algorithm explained in the Automatically determine the initial parameters in fitting procedure .
We recommend the users use the automatic mode first if they are not familiar with the determination of initial parameters.