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Stochastic field theory of viscoelastic solids: a quantitative study of phononic friction

dc.contributor.advisorKrüger, Matthias Prof. Dr.
dc.contributor.authorLee, Miru
dc.date.accessioned2022-07-27T12:19:42Z
dc.date.available2022-08-03T00:50:15Z
dc.date.issued2022-07-27
dc.identifier.urihttp://resolver.sub.uni-goettingen.de/purl?ediss-11858/14186
dc.identifier.urihttp://dx.doi.org/10.53846/goediss-9340
dc.language.isoengde
dc.subject.ddc530de
dc.titleStochastic field theory of viscoelastic solids: a quantitative study of phononic frictionde
dc.typedoctoralThesisde
dc.contributor.refereeKrüger, Matthias Prof. Dr.
dc.date.examination2022-06-23de
dc.subject.gokPhysik (PPN621336750)de
dc.description.abstractengIdentifying the relevant dynamics of solids that give rise to friction is an active field of study. It includes electronic and phononic degrees of freedom, but the latter seems to be of particular significance. For instance, drastic changes of friction on solids near phase transitions have been repeatedly measured. This phenomenon is attributed to sudden changes in the dynamics of phonons. The exact mechanism is, however, still poorly understood with many unanswered as well as yet-to-be-uttered questions. With this in mind, this thesis starts with asking; what are the roles of hidden phononic degrees of freedom when it comes to friction? We thus quantitatively study how friction arises from phonon dynamics of solids by means of both analytical and numerical methods.de
dc.contributor.coRefereeVolkert, Cynthia A. Prof. Dr.
dc.contributor.thirdRefereeSollich, Peter Prof. Dr.
dc.contributor.thirdRefereeBehler, Jörg Prof. Dr.
dc.contributor.thirdRefereeMüller, Marcus Prof. Dr.
dc.contributor.thirdRefereeWenderoth, Martin PD Dr.
dc.subject.engStatistical physicsde
dc.subject.engNonequilibrium physicsde
dc.subject.engFrictionde
dc.subject.engTribologyde
dc.subject.engSolid state physicsde
dc.subject.engStochastic systemde
dc.subject.engLinear response theoryde
dc.subject.engGreen-Kubo relationde
dc.subject.engViscoelastic solidsde
dc.identifier.urnurn:nbn:de:gbv:7-ediss-14186-0
dc.affiliation.instituteFakultät für Physikde
dc.description.embargoed2022-08-03de
dc.identifier.ppn1811946372
dc.notes.confirmationsentConfirmation sent 2022-07-27T12:45:01de


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