「*.overlap」:修訂間差異

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已建立頁面,內容為 "is the file output the electron and hole overlap with the 2D Schrodinger eigen solver. The output file format is m,n, EigenEn(m),EigenEp(n),EigenEfn(m),EigenEfp(n..."
 
Yrwu留言 | 貢獻
無編輯摘要
第2行: 第2行:
The output file format is  
The output file format is  


m,n, EigenEn(m),EigenEp(n),EigenEfn(m),EigenEfp(n), <math> | \langle \phi_{e,m}|\phi_{h,n} \rangle |</math>
m,n, EigenEn(m),EigenEp(n),EigenEfn(m),EigenEfp(n), <math> | \langle \phi_{e,m}|\phi_{h,n} \rangle |</math>


m is the mth electron eigen states
m is the mth electron eigen states
n is the nth hole eigen states
n is the nth hole eigen states
EigenEn(m)  is the m_th electron eigen values
EigenEn(m)  is the <math>m_{th}</math> electron eigen values
EigenEp(n)  is the n_th hole eigen values
EigenEp(n)  is the <math>n_{th}</math> hole eigen values
EigenEfn(m) is the averaged m_th eigen wave function region's electon fermi level
EigenEfn(m) is the averaged <math>m_{th}</math> eigen wave function region's electon fermi level
EigenEfp(n) is the averaged n_th eigen wave function region's hole's fermi level
EigenEfp(n) is the averaged <math>n_{th}</math> eigen wave function region's hole's fermi level
abs(overlap(m,n)) is <math> | phi_{e,m}^{*} \phi_{h,n}^{*} | </math>
  <math> | \langle \phi_{e,m}|\phi_{h,n} \rangle |</math> is the overlap of mth electron and nth hole.

於 2017年10月4日 (三) 11:37 的修訂

is the file output the electron and hole overlap with the 2D Schrodinger eigen solver. The output file format is

m,n, EigenEn(m),EigenEp(n),EigenEfn(m),EigenEfp(n), |ϕe,m|ϕh,n|
m is the mth electron eigen states
n is the nth hole eigen states
EigenEn(m)  is the mth electron eigen values
EigenEp(n)  is the nth hole eigen values
EigenEfn(m) is the averaged mth eigen wave function region's electon fermi level
EigenEfp(n) is the averaged nth eigen wave function region's hole's fermi level
|ϕe,m|ϕh,n| is the overlap of mth electron and nth hole.