"$usetaunrbyfunc" 修訂間的差異
出自 DDCC TCAD TOOL Manual
(未顯示由 2 位使用者於中間所作的 5 次修訂) | |||
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$usetaunrbyfunc |
$usetaunrbyfunc |
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− | Type_R1 p1 p2 p3 p4 p5..... |
+ | Type_R1 p1 p2 p3 p4 p5.....p12 |
− | Type_R2 p1 p2 p3 p4 p5..... |
+ | Type_R2 p1 p2 p3 p4 p5.....p12 |
− | Type_R3 p1 p2 p3 p4 p5..... |
+ | Type_R3 p1 p2 p3 p4 p5.....p12 |
... |
... |
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... |
... |
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... |
... |
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− | Type_RN p1 p2 p3 p4 ..... |
+ | Type_RN p1 p2 p3 p4 .....p12 |
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4: <math> \tau_{n} = p1 + \left(\frac{P2-P1}{1+(\frac{N_{d}}{p3}) ^{p4}} \right) </math> , and <math> \tau_{p} = p5 + \left(\frac{P6-P5}{1+(\frac{N_{a}}{p7}) ^{p8}} \right) </math> |
4: <math> \tau_{n} = p1 + \left(\frac{P2-P1}{1+(\frac{N_{d}}{p3}) ^{p4}} \right) </math> , and <math> \tau_{p} = p5 + \left(\frac{P6-P5}{1+(\frac{N_{a}}{p7}) ^{p8}} \right) </math> |
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13: <math> \tau_{n,0} = p1 + \left(\frac{P2-P1}{1+(\frac{N_{d}}{p3}) ^{p4}} \right) </math>, <math>\tau_{n} = \tau_{n,0} \times (\frac{T}{p5}) ^{p6} </math> , and <math> \tau_{p} = \tau_{n} </math> |
13: <math> \tau_{n,0} = p1 + \left(\frac{P2-P1}{1+(\frac{N_{d}}{p3}) ^{p4}} \right) </math>, <math>\tau_{n} = \tau_{n,0} \times (\frac{T}{p5}) ^{p6} </math> , and <math> \tau_{p} = \tau_{n} </math> |
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+ | 24: <math> \tau_{n,0} = p1 + \left(\frac{P2-P1}{1+(\frac{N_{d}}{p3}) ^{p4}} \right) </math>, <math>\tau_{n} = \tau_{n,0} \times (\frac{T}{p5}) ^{p6} </math> , and |
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+ | <math> \tau_{p,0} = p7 + \left(\frac{P8-P7}{1+(\frac{N_{d}}{p9}) ^{p10}} \right) </math>, <math>\tau_{p} = \tau_{p,0} \times (\frac{T}{p11}) ^{p12} </math>. |
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+ | If the lifetime is for activated dopant then |
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+ | 31: <math> \tau_{n} = p1 + \left(\frac{P2-P1}{1+(\frac{N_{d}^{+}}{p3}) ^{p4}} \right) </math> , and <math> \tau_{p} = \tau_{n} </math> |
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+ | 41: <math> \tau_{n} = p1 + \left(\frac{P2-P1}{1+(\frac{N_{d}^{+}}{p3}) ^{p4}} \right) </math> , and <math> \tau_{p} = p5 + \left(\frac{P6-P5}{1+(\frac{N_{a}^{-1}}{p7}) ^{p8}} \right) </math> |
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+ | 131: <math> \tau_{n,0} = p1 + \left(\frac{P2-P1}{1+(\frac{N_{d}^{+}}{p3}) ^{p4}} \right) </math>, <math>\tau_{n} = \tau_{n,0} \times (\frac{T}{p5}) ^{p6} </math> , and <math> \tau_{p} = \tau_{n} </math> |
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+ | 241: <math> \tau_{n,0} = p1 + \left(\frac{P2-P1}{1+(\frac{N_{d}^{+}}{p3}) ^{p4}} \right) </math>, <math>\tau_{n} = \tau_{n,0} \times (\frac{T}{p5}) ^{p6} </math> , and |
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+ | <math> \tau_{p,0} = p7 + \left(\frac{P8-P7}{1+(\frac{N_{a}^{-}}{p9}) ^{p10}} \right) </math>, <math>\tau_{p} = \tau_{p,0} \times (\frac{T}{p11}) ^{p12} </math>. |
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+ | <br>'''<big><big>The $usetaunrbyfunc setting in GUI interface is here</big></big>''' <br> |
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+ | Press '''Thermal''', check the box and set the fields as needed!<br> |
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+ | [[檔案:2D_usetaunrbyfunc_fig1.jpg|1200px]] |
於 2024年11月21日 (四) 17:44 的最新修訂
$usetaunrbyfunc is to enable the temperature and carrier density dependent nonradiative lifetime module with the predefined function. The function is designed for each region. So if total n regions is used, then you will need to setup n regions. The format is
$usetaunrbyfunc Type_R1 p1 p2 p3 p4 p5.....p12 Type_R2 p1 p2 p3 p4 p5.....p12 Type_R3 p1 p2 p3 p4 p5.....p12 ... ... ... Type_RN p1 p2 p3 p4 .....p12
Type
0: Use the original nonradiative lifetime defined in parameter setions 1: , and 2: , and 3: , and 4: , and 13: , , and 24: , , and , .
If the lifetime is for activated dopant then
31: , and 41: , and 131: , , and 241: , , and , .
The $usetaunrbyfunc setting in GUI interface is here
Press Thermal, check the box and set the fields as needed!