「$callexciton」:修訂間差異

出自DDCC TCAD TOOL Manual
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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
  2e-14 20000 3000 1e-12 1
  2e-14 20000 3000 1e-12 1
[[Subroutine_exciton1D]],

於 2017年8月22日 (二) 20:08 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.


dnexdt=D2nex(r)nex(r)τγnex(r)2+G


Where 

  • D is diffusion coefficient.
  • τ is relaxation time of exciton.
  • γ is annihilation rate constant.
  • G 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. (cm2)s1
  • kr : radiatvie rate constant (s1)
  • knr :non-radiative rate constant (s1)
  • gamma : quenching coefficient. (cm2)s1
  • 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

Subroutine_exciton1D,