Publication | Closed Access
Temperature Dependence of Channel Mobility in>tex<$hbox HfO_2$>/tex<-Gated NMOSFETs
119
Citations
14
References
2004
Year
Electrical EngineeringExtra PhononEngineeringPhysicsNanoelectronicsElectronic EngineeringBias Temperature InstabilityApplied PhysicsCondensed Matter PhysicsChannel MobilityPhononHfo/sub 2/-Gated NmosfetsMicroelectronicsSemiconductor DeviceHfo/sub 2/
The degradation mechanisms of effective electron channel mobility in HfO/sub 2/-gated nMOSFETs have been studied by analyzing experimental data at various temperatures from 120 to 320 K. The major finding is that, while significant Coulomb scattering plays an important role in causing the observed mobility degradation, it does not account for all of the degradation; rather, it requires an extra phonon scattering mechanism, beyond that arising from the phonons in the Si substrate, to explain our experimental results. This extra phonon scattering mechanism has been found to exhibit relatively weak temperature dependence, and is attributed to the soft optical phonons in the HfO/sub 2/ layer.
| Year | Citations | |
|---|---|---|
Page 1
Page 1