「$usenewBTBT」:修訂間差異

出自DDCC TCAD TOOL Manual
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The method is an update of BTBT. But one more parameters "s" is introduced. When s=-1, it will become something like Pool Frankel field dependent generation model.  The generation rates are decided by
This method is an update of BTBT. But one more parameters "s" is introduced. When s=-1, it will become something like Pool Frankel field dependent generation model.  The generation rates are decided by
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<math> G = a \times |E|^{p} \times exp\left( - \frac{b}{|E|^{s}} \right) +a2 \times |E|^{p2} \times exp\left( - \frac{b2}{|E|^{s2}} \right) </math>
<math> G = a \times |E|^{p} \times exp\left( - \frac{b}{|E|^{s}} \right) +a2 \times |E|^{p2} \times exp\left( - \frac{b2}{|E|^{s2}} \right) </math>

於 2021年9月7日 (二) 00:49 的修訂

This method is an update of BTBT. But one more parameters "s" is introduced. When s=-1, it will become something like Pool Frankel field dependent generation model. The generation rates are decided by
G=a×|E|p×exp(b|E|s)+a2×|E|p2×exp(b2|E|s2)

The unit of b is V/cm The unit of a is cm3s1

Note: If BTBT is used. This one cannot be used.



For example:

$usePool 
a b p s a2 b2 p2 s2
a b p s a2 b2 p2 s2
a b p s a2 b2 p2 s2
a b p s a2 b2 p2 s2
...
...
... N layers

In each layer, you will need to set the a b p coefficients. If you don't want to consider BTBT in this layer. please set a and a2 equal to 0.0.


See also:
$useBTBT $usePool