researchplan.docx
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1、ResearchPlanName*Dateofbirth198*-*-*GenderMaleMajorPhysicsCurrentUniversity*HostingforeigncountryTheUnitedStatesHostingforeignUniversityMassachusettsinstituteoftechnology(MIT)HostingfacultyordepartmentDepartmentofphysicsCenterfortheoreticalphysicsHostingforeignsupervisor*AreaofresearchTheoreticalphy
2、sicsDurationofstudyFromJuly1,2019toDecember30,2019RESEARCHPROJECTTIT1.E:Somestudiesonnon-equi1ibriumstronglycoupledsystemsfromholographydualityResearchBackgroundHolographydualiIyhasbeenprovedtobeaneffectivetooltodealwiththestronglycoupledsystems.Especiallyinrecentyears,thisdualityhasalsobeenusedexte
3、nsivelyinnon-equilibriumstrongcoupledsystems.Oneofthebiggestmotivationtousethisgaugegravitydualitytostudythenon-equilibriumstronglycoupledsystemsisthatthethermalizationtimeofquarkgluonplasmaproducedinRHICand1.HCexperimentspredictedbytheperturbationtheoryislongerthantheexperimentresult.Accordingtothe
4、holographicconjecture,theprocessofblackholeformationviagravitationalcollapseisexceptedtobethedualdescriptionofthethermalizationprocess.Basedonthisparadigm,Balasubramanianetal.findthatonecanuseIhCtwo-pointcorrelationfunction,Wilsonloop,andentanglemententropy,whichcanfurtherbeevaluatedinthesaddlepoint
5、approximationintermsofgeodesic,minimalsurface,andminimalvolumeindividually,todetectthethermalization.Itisfoundthattheholographicthermalizationalwaysproceedsinatop-downpattern,namelytheUVmodesthermalizefirstly,followedbytheIRmodes.Thereisalsoasiightdelayintheonsetofthermalizationandtheentanglementent
6、ropythermalizesslowest,whichsetsatimescaleforcqui1ibration.Recently,*etal.studiedindetailseveraluniversalfeaturesinthetimeevolutionofentanglemententropyandotherobservablesinquenchedholographicsystems.Thepointthatthewholethermalizationshouldbedividedintofourprocesses:regimesofpre-1oca1-equilibrationq
7、uadraticgrowth,post-local-equi1Ibration1ineargrowth,amemorylossregime,andasaturationregime.PreparationsfortheresearchprojectRecently,Mypartnerand1areinterestedinstudyingthethermalizationviaAdSZCI7Tcorrespondence.Wehaveachievedsomeinterestingprogress.Firstly,Vfehavestudiedholographicthermalizationint
8、heframeworkof(EMGBgravity)Einstcin-MaxwelI-Gauss-Bonnetgravity.Usingthetwo-pointcorrelationfunctionandexpectationvalueofWilsonlooptoprobethethermalization,wefoundthattheGauss-Bonnetcoefficientcanacceleratethethermalizationwhilethechargehasanoppositeeffect,Inaddition,wefurtherdiscussedaboutthethermal
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