Journal of Applied Physics · 1999 · 50 citations · 10 references
SemiconductorsSemiconductor TechnologyCategoryquantum ElectronicsSemiconductor SuperlatticesEngineeringPhysicsNovel SuperconductorsElectron Transmission ProbabilityApplied PhysicsCondensed Matter PhysicsQuantum MaterialsConventional Semiconductor SuperlatticesDisordered Quantum SystemElectron TransportSemiconductor MaterialQuantum DevicesSemiconductor Device
We study the electron transmission probability in semiconductor superlattices where the height of the barriers is modulated by a Gaussian profile. Such structures act as efficient energy band-pass filters and, contrary to previous designs, it is expected to present a lower number of unintentional defects and, consequently, better performance. The j–V characteristic presents negative differential resistance with peak-to-valley ratios much greater than in conventional semiconductor superlattices.
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Tunneling in a finite superlattice
Raphael Tsu, L. Esaki · Applied Physics Letters · 1973 · 2.3K citations
C. B. Duke, John Lambe · Physics Today · 1973 · 543 citations
C. Rauch, G. Strasser, K. Unterrainer et al. · Physical Review Letters · 1998 · 69 citations
Categoryquantum Electronics, Charge Excitations, Engineering +16