Thermal transport in superconductors with coexisting spin density wave order

dc.contributor.advisorChairperson, Graduate Committee: Anton Vorontsoven
dc.contributor.authorChoudhury, Sourav Senen
dc.contributor.otherThis is a manuscript style paper that includes co-authored chapters.en
dc.date.accessioned2023-08-22T12:53:26Z
dc.date.available2023-08-22T12:53:26Z
dc.date.issued2021en
dc.description.abstractIn this thesis we study thermal transport in a two-dimensional system with coexisting s- or d-wave Superconducting (SC) and Spin Density Wave (SDW) orders. We analyse the nature of coexistence phase in a tight-binding square lattice with Q = (pi, pi) SDW ordering. The electronic thermal conductivity is computed within the framework of the Boltzmann kinetic theory, using Born approximation for the impurity scattering collision integral. We describe the influence of the Fermi surface (FS) topology, the competition between the SC and SDW order parameters, the presence or absence of zero energy excitations in the coexistence phase, on the low temperature behavior of thermal conductivity of the various paring states. We present qualitative analytical, and fully numerical results that show that the heat transport signatures of various SC states emerging from collinear SDW order are quite distinct, and depend on the symmetry properties of the SC order parameter under translation by the SDW nesting vector Q. A combination of (pi, pi)-SDW and the d x 2-y 2 pairing state results in fully gapped excitations, whereas (pi, pi)-SDW co-existing with either d xy or s-wave pairing states may always have gapless excitations. There appear special stable Dirac nodal points that are not gapped by the SC order in the coexistence phase, resulting in finite residual heat conductivity.en
dc.identifier.urihttps://scholarworks.montana.edu/handle/1/17826
dc.language.isoenen
dc.publisherMontana State University - Bozeman, College of Letters & Scienceen
dc.rights.holderCopyright 2021 by Sourav Sen Choudhuryen
dc.subject.lcshSuperconductorsen
dc.subject.lcshHeat--Conductionen
dc.subject.lcshElectron distributionen
dc.titleThermal transport in superconductors with coexisting spin density wave orderen
dc.typeDissertationen
mus.data.thumbpage10en
thesis.degree.committeemembersMembers, Graduate Committee: Bennett Link; Wm. Randall Babbitt; Yves U. Idzerda; John J. Neumeieren
thesis.degree.departmentPhysics.en
thesis.degree.genreDissertationen
thesis.degree.namePhDen
thesis.format.extentfirstpage1en
thesis.format.extentlastpage86en

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