Key equations from quantum statistical tools: Difference between revisions

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*charge density operator: <math> \hat{n}(\mathbf{r}) = |\mathbf{r} \rangle \langle \mathbf{r}| </math>
*charge density operator: <math> \hat{n}(\mathbf{r}) = |\mathbf{r} \rangle \langle \mathbf{r}| </math>


*expectation value: <math> n(\mathbf{r}) </math> = \mathrm{Tr}[\hat{\rho}_\mathrm{eq}|\mathbf{r} \rangle \langle \mathbf{r}|]
*expectation value: <math> n(\mathbf{r}) = \mathrm{Tr}[\hat{\rho}_\mathrm{eq}|\mathbf{r} \rangle \langle \mathbf{r}|] </math>


===Density of states===
===Density of states===

Revision as of 12:59, 27 September 2012

Equilibrium

Expectation values

A=Tr[ρ^eqA^]

Density matrix of fermions in equilibrium

ρ^eq=αf(Eαμ)|EαEα|=f(H^μI^)

  • Fermi-Dirac distribution function: f(x)=1/[exp(x/kBT)+1]
  • Hamiltonian and its spectral decomposition: H^=αEα|EαEα|
  • Function of Hamiltonian: F(H^)=αF(Eα)|EαEα|

Charge density

  • charge density operator: n^(𝐫)=|𝐫𝐫|
  • expectation value: n(𝐫)=Tr[ρ^eq|𝐫𝐫|]

Density of states

Nonequilibrium

  • Expectation values:
  • Current operator:
  • Spin torque operator: