「$usemunpfunc」:修訂間差異

出自DDCC TCAD TOOL Manual
跳至導覽 跳至搜尋
Jameshuang留言 | 貢獻
無編輯摘要
Jameshuang留言 | 貢獻
無編輯摘要
第19行: 第19行:


'''<big><big>Parameter Explanation</big></big>'''
'''<big><big>Parameter Explanation</big></big>'''
* μe : electron zero-field mobility <math>(cm^{2}eV^{-1}s^{-1})</math>
* μe : electron zero-field mobility. <math>(cm^{2}eV^{-1}s^{-1})</math>
* βe : electron beta <math>(eV^{-1/2})</math>
* βe : electron beta. <math>(eV^{-1/2})</math>
* μh : hole zero-field mobility <math>(cm^{2}eV^{-1}s^{-1})</math>
* μh : hole zero-field mobility. <math>(cm^{2}eV^{-1}s^{-1})</math>
* βh : hole beta <math>(eV^{-1/2})</math>
* βh : hole beta. <math>(eV^{-1/2})</math>

於 2017年8月15日 (二) 08:53 的修訂

Function for organic material. We usually assume the carrier mobility is depend on electrical field and follow Poole-Frenkel field dependent mobility equation.

Mobility follow this equation


μ=μ0exp(βE)

Where 

  • μ0 is the zero-field mobility
  • β is the factor of mobility increasing
  • E is the electric field.


Format

$usemunpfunc
1 μe βe μh βh

Parameter Explanation

  • μe : electron zero-field mobility. (cm2eV1s1)
  • βe : electron beta. (eV1/2)
  • μh : hole zero-field mobility. (cm2eV1s1)
  • βh : hole beta. (eV1/2)