Japanese Journal of Applied Physics · 1977 · 149 citations · 9 references
SemiconductorsSemiconductor TechnologyEngineeringDislocation InteractionCrystalline DefectsPhysicsAbrupt Kink ModelApplied PhysicsCondensed Matter PhysicsDislocation VelocitiesP-type GaasN-type GaasSemiconductor Device
Dislocation velocities in undoped n-type (n=1×1017 cm-3) and Zn-doped p-type (p=3×1018 cm-3) GaAs have been determined by the double-etch technique. In n-type GaAs, α dislocations are about 102 times faster than β dislocations; in p-type GaAs, β dislocations are about 2 to 10 times faster than α dislocations. The velocities of α dislocations in n- and p-type GaAs are roughly equal; the velocities of β dislocations in n-type GaAs are 102 to 103 times smaller than in p-type GaAs. The velocity data can be well described by two theories: the abrupt kink model and the dragging point model. The stress dependence of the activation energy for dislocation motion is successfully described by the abrupt kink model.
9
Theory of Dislocation Mobility in Semiconductors
V. Celli, M. N. Kabler, T. Ninomiya et al. · Physical Review · 1963 · 265 citations
Engineering, Severe Plastic Deformation, Dislocation Mobility +19