「$activateStimEL」:修訂間差異

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(未顯示由 3 位使用者於中間所作的 6 次修訂)
第12行: 第12行:
  $activateStimEL
  $activateStimEL
  Method QW_number 1st_QW_layerNum 2nd_QW_layerNum 3rd_QW_layerNum ...
  Method QW_number 1st_QW_layerNum 2nd_QW_layerNum 3rd_QW_layerNum ...
  <math> \beta_{1}  R_{th,1} </math> , P3_1, P4_1
  <math> \beta_{1}~~ R_{th,1} ~~ P3_1~~ P4_1</math>
  <math> \beta_{2}  R_{th,2} </math> , P3_2, P4_2
  <math> \beta_{2}~~ R_{th,2} ~~ P3_2~~ P4_2</math>
  <math> \beta_{3}  R_{th,3} </math> , P3_3, P4_3
  <math> \beta_{3}~~ R_{th,3} ~~ P3_3~~ P4_3</math>
  <math> \beta_{4}  R_{th,4} </math> , P3_4, P4_4
  <math> \beta_{4}~~ R_{th,4} ~~ P3_4~~ P4_4</math>
  <math> \beta_{5}  R_{th,5} </math> , P3_5, P4_5
  <math> \beta_{5}~~ R_{th,5} ~~ P3_5~~ P4_5</math>
  .....
  .....
  ..... total N layers (regions)
  ..... total N layers (regions)
  <math> \beta_{N}  R_{th,N} </math> , P3_N, P4_N
  <math> \beta_{N}~~ R_{th,N} ~~ P3_N~~ P4_N </math>


  Method: 1 -> Given <math> \beta and R_{th} </math> of each layer. If this is layer is not QW, set <math> \beta=0.0 R_{th}=0.0 </math>
  Method: 1 -> Given <math> \beta</math> and <math>R_{th} </math> of each layer. If this is layer is not QW, set <math> \beta=0.0~~,and~~R_{th}=0.0 </math>
  Method: 2 -> defined for future expansion
  Method: 2 -> defined for future expansion
  P3, P4 : Not used, may be used when Method 2 is activate in the future
  <math>P3</math>, <math>P4</math> : Not used. It might be used when Method 2 is activate in the future




第31行: 第31行:
  1 1 2  
  1 1 2  
  0.000 5.0e27 0.00 0.00
  0.000 5.0e27 0.00 0.00
  1.000d-4 5.0e27 0.00 0.00
  1.000e-4 5.0e27 0.00 0.00
  0.000 5.0e27 0.00 0.00
  0.000 5.0e27 0.00 0.00
  0.000 5.0e27 0.00 0.00
  0.000 5.0e27 0.00 0.00


In this command, use method 1. There is 1 QW which is the 2nd layer. The <math> \beta and R_{th} </math> of the 2nd layer is 1.0e-4 and 5.0e27 <math> (1/cm^{3}s) </math>
In this command, use method 1. There is 1 QW which is the 2nd layer. The <math> \beta </math> and <math> R_{th} </math> of the 2nd layer is 1.0e-4 and 5.0e27 <math> (1/cm^{3}s) </math>
 
<big>'''The $activateStimEL setting for 1D-DDCC in GUI interface '''</big> <br>
 
Select the '''method''' in step 3.<br>
[[檔案:1d_$activateStimEL_fig1.jpg|1300px]]<br>
The number assigned to each method:<br>
[[檔案:1d_$activateStimEL_fig2.jpg|500px]]<br>
Select '''QW_number'''.
[[檔案:1d_$activateStimEL_fig3.jpg|1300px]]<br>
[[檔案:1d_$activateStimEL_fig4.jpg|500px]]<br>
 
<big>'''The $activateStimEL setting for 2D-DDCC in GUI interface '''</big> <br>
1. After setting up the general structure, press '''Additional Function'''.<br>
2. Check the box for '''Stimulate emission setting''' and fill in these fields as needed!<br>
[[檔案:2D_activateStimEL_fig1.jpg|1200px]]

於 2025年1月4日 (六) 13:02 的最新修訂

$activateStimEL is a command used to enable the calculation of stimulate Emission.

The stimulate emission coefficient is calculated by:

Bstim=B0×β×RradRthRrad
Rstim=Bstim×n×p
B0: is the radiative recombination coefficient
Rth: is the threshold recombination rate
Rrad: is the spontaneous radiative recombination rates decided by  B0×n×p
β: is the fitting coefficient. 

The way to activate the command is as following

$activateStimEL
Method QW_number 1st_QW_layerNum 2nd_QW_layerNum 3rd_QW_layerNum ...
β1Rth,1P31P41
β2Rth,2P32P42
β3Rth,3P33P43
β4Rth,4P34P44
β5Rth,5P35P45
.....
..... total N layers (regions)
βNRth,NP3NP4N
Method: 1 -> Given β and Rth of each layer. If this is layer is not QW, set β=0.0,andRth=0.0
Method: 2 -> defined for future expansion
P3, P4 : Not used. It might be used when Method 2 is activate in the future


For example:

$activateStimEL
1 1 2 
0.000 5.0e27 0.00 0.00
1.000e-4 5.0e27 0.00 0.00
0.000 5.0e27 0.00 0.00
0.000 5.0e27 0.00 0.00

In this command, use method 1. There is 1 QW which is the 2nd layer. The β and Rth of the 2nd layer is 1.0e-4 and 5.0e27 (1/cm3s)

The $activateStimEL setting for 1D-DDCC in GUI interface

Select the method in step 3.

The number assigned to each method:

Select QW_number.

The $activateStimEL setting for 2D-DDCC in GUI interface
1. After setting up the general structure, press Additional Function.
2. Check the box for Stimulate emission setting and fill in these fields as needed!