带状双层石墨上的自旋量子比特

带状双层石墨上的自旋量子比特

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时间:2019-06-25

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1、▲,-^IAbstractRecently,onthehorizonofmaterialsscienceandcondensed—matterphysics,arapidlyrisingstarappears,whichistheso-calledgraphene.Thisperfectlytwo-dimensionalmaterialshowsoutstandinglyhighelectronicandcrystalqual-ity.Withoutbeingaffectedbyitsshorthistory,graphenehasopenedana

2、bundantsourceofnewphysicsandpotentialapplications.Scientistshavejustuncoveredtheverytipoftheicebergofitsqualitiesandapplications,althoughitsexperi-mentsandtheoriesareexceptionallyrapidlyprogressing.Inthethesis,wemainlyfocusontherealizationofspinqubitsviaquantumdotsinthegraphene

3、ribbonandbilayergrapheneribbon.Intheintroductionchapter,webrieflyreviewtheexperimentalandtheoreticalbreakthroughsongrapheneinrecentyears.InChapterTwo,we’introducetheDiracFermionasthelowenergyexcitatiohsofthegraphene,basedonthefieldtheory.Wethendiscusstwo-dimensionalhoneycomblat

4、ticeinthenearest—neighbortight—bindingmodel.Wederivetheeffective-massequationwithinthecalledk·Papproximation.InChapterThree,weconsiderelectronicstatesofgrapheneribbonwitharm-chairandzigzagedges,respectively.Forthearmchairedge,bandstructureisinsulatingwhenthewidthoftheribboninla

5、tticeconstantunitshastheforms3Mor3M+2,withMallinteger,andmetallicotherwise.InChapterFour,wediscusshowtorealizespinqubitsingrapheneviaquantumdots.Here,twodifficultiesmayarise:(1)Asthereisnoenergygapingraphenespectrum,SOitishardtoformtunablequantumdotsingraphene.(2)Sincethevalley

6、degeneracyexistsingraphene,thereisnoHeisenbergexchangecouplingbetweentwoneighboringquantumdots.However,wemaysolvethesetwoprob-lemsatoncebyusingtunabletransversestatesingrapheneribbonwitharmchairedges.AsdiscussedinChapterThree,anenergygapwithtensofmeVappears哞2onthiskindofgraphen

7、eribbon,SOthevalleydegeneracyisliftedandtheHeisen-bergexchangecouplingappears.Moreover,itisshownthatthespinqubitsinquantumdotsimplementedinthearmchairgrapheneribboncanbecorrelatedbyeachotheroverawidedistance.InChapterFive,wesuggestthatthespinqubitscanbealsorealizedinthebilayerg

8、rapheneribbonwitharmchairedges.Wefindthattheinterlayer

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