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공공누리This item is licensed Korea Open Government License

dc.contributor.author
류훈
dc.date.accessioned
2019-08-28T07:41:13Z
dc.date.available
2019-08-28T07:41:13Z
dc.date.issued
2012-03-21
dc.identifier.issn
0021-8979
dc.identifier.uri
https://repository.kisti.re.kr/handle/10580/14087
dc.description.abstract
Numericalutilitiesofthecontactblockreduction(CBR)methodinevaluatingtheretardedGreen’sfunctionarediscussedfor3Dmulti-bandopensystemsthatarerepresentedbytheatomictight-binding(TB)andcontinuumk.p(KP)bandmodel.Itisshownthatthemethodologytoapproximatesolutionsofopensystems,whichhasbeenalreadyreportedforthesingle-bandeffectivemassmodel,cannotbedirectlyusedforatomicTBsystems,sincetheuseofasetofzincblendecrystalgridsmakestheinter-couplingmatrixnon-invertible.WederiveandtestanalternativewithwhichtheCBRmethodcanbestillpracticalinsolvingTBsystems.Thismulti-bandCBRmethodisvalidatedbyaproofofprinciplesonsmallsystemsandalsoshowntoworkexcellentwiththeKPapproach.Furtherdetailedanalysisontheaccuracy,speed,andscalabilityonhighperformancecomputingclustersisperformedwithrespecttothereferenceresultsobtainedbythestate-of-the-artrecursiveGreen’sfunctionandwavefunctionalgorithm.ThisworkshowsthattheCBRmethodcouldbeparticularlyusefulincalculatingresonanttunnelingfeatures,butshowsalimitedpracticalityinsimulatingfieldeffecttransistors(FETs)whenthesystemisdescribedwiththeatomicTBmodel.CoupledtotheKPmodel,however,theutilityoftheCBRmethodcanbeextendedtosimulationsofnanowireFETs.
dc.language
eng
dc.relation.ispartofseries
JournalofAppliedPhysics
dc.title
Feasibility, accuracy, and performance of contact block reduction method for multi-band simulations of ballistic quantum transport
dc.citation.number
63705
dc.citation.startPage
41285
dc.citation.volume
111
dc.subject.keyword
QuantumTransport
dc.subject.keyword
ContactBlockReduction
dc.subject.keyword
Multi-bandModel
dc.subject.keyword
Nanoelectronics
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7. KISTI 연구성과 > 학술지 발표논문
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