"$callexciton" 修訂間的差異
出自 DDCC TCAD TOOL Manual
Jameshuang (對話 | 貢獻) |
Jameshuang (對話 | 貢獻) |
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− | Function for calculate the exciton distribution. We usually use this equation for organic material. Behavior of exciton will follow this equation. |
+ | Function for calculate the exciton distribution. We usually use this equation for organic material. Behavior of exciton will follow this equation. You can see the detail in [[Subroutine_exciton1D]]. |
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2e-14 20000 3000 1e-12 1 |
2e-14 20000 3000 1e-12 1 |
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2e-14 20000 3000 1e-12 1 |
2e-14 20000 3000 1e-12 1 |
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+ | |||
+ | [[Subroutine_exciton1D]], |
於 2017年8月23日 (三) 04:08 的修訂
Function for calculate the exciton distribution. We usually use this equation for organic material. Behavior of exciton will follow this equation. You can see the detail in Subroutine_exciton1D.
Where
- is diffusion coefficient.
- is relaxation time of exciton.
- is annihilation rate constant.
- is exciton generation rate.
Format
$callexciton n d kr knr gamma g
Parameter Explanation
- n : the number of tables we usually set n as 5.
- d : diffusion coefficient.
- kr : radiatvie rate constant
- knr :non-radiative rate constant
- gamma : quenching coefficient.
- g : generation rate if you wanna let whole recombination rate change into exciton you should set g as 1.
Example
$callexciton 5 2e-14 20000 3000 1e-12 1 2e-14 20000 3000 1e-12 1 2e-14 20000 3000 1e-12 1 2e-14 20000 3000 1e-12 1 2e-14 20000 3000 1e-12 1