Title: Semiconductors: Effective density of states
1Semiconductors Effective density of states
Most of the electrons are close to the C.B.
minimum Most of the holes are close to the V.B.
maximum
Calculate the total electron density Assuming
non-degenerate semiconductor
2Intrinsic Semiconductor
For any material, including intrinsic
3Carrier concentrations at equilibrium
4Doping
Donor
Acceptor
5Ionization Energy
Occuied donors
Ionization Energy
6Populating a donor level
Or add an electron spin down to Ed
Add an electron spin up to Ed
Strong repulsion
7Complete Ionization
Complete ionization
if
8Freeze out
9Equilibrium carrier concentration
Assume complete ionization
intrinsic
10Fermi Level Position
11Conductivity in a semiconductor
Averaging over all energies
In a metal
Averaging over the Fermi surface
Isotropic parabolic band
12Mobility
Drift velocity
Tensor of inverse effective mass
13Thermo-electric effect in a semiconductor
Consider isotropic medium
Parabolic band
Energies are relative to Eg
In a weakly doped n-type
14Generation and Recombination
Assume n-type semiconductor
15Diffusion
Einstein Relations
16In 3-D
17(No Transcript)
18Continuity
19pn(x)pn(0) JD(-ls)0
New boundary condition
20for xgt0
diffusion length
boundary conditions
solution
21(No Transcript)
22(No Transcript)
23(No Transcript)