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dc.contributor.authorPatel, Aavishkar Apoorva
dc.contributor.authorChowdhury, Debanjan
dc.contributor.authorAllais, Andrea
dc.contributor.authorSachdev, Subir
dc.date.accessioned2016-09-12T17:43:51Z
dc.date.issued2016
dc.identifier.citationPatel, Aavishkar A., Debanjan Chowdhury, Andrea Allais, and Subir Sachdev. 2016. “Confinement Transition to Density Wave Order in Metallic Doped Spin Liquids.” Physical Review B 93 (16) (April 25). doi:10.1103/physrevb.93.165139.en_US
dc.identifier.issn2469-9950en_US
dc.identifier.urihttp://nrs.harvard.edu/urn-3:HUL.InstRepos:28409890
dc.description.abstractInsulating quantum spin liquids can undergo a confinement transition to a valence bond solid via the condensation of topological excitations of the associated gauge theory. We extend the theory of such transitions to fractionalized Fermi liquids (FL*): these are metallic doped spin liquids in which the Fermi surfaces only have gauge neutral quasiparticles. Using insights from a duality transform on a doped quantum dimer model for the U(1)-FL* state, we show that projective symmetry group of the theory of the topological excitations remains unmodified, but the Fermi surfaces can lead to additional frustrating interactions. We propose a theory for the confinement transition of Z2-FL* states via the condensation of visons. A variety of confining, incommensurate density wave states are possible, including some that are similar to the incommensurate d-form factor density wave order observed in several recent experiments on the cuprate superconductors.en_US
dc.description.sponsorshipPhysicsen_US
dc.language.isoen_USen_US
dc.publisherAmerican Physical Society (APS)en_US
dc.relation.isversionofdoi:10.1103/physrevb.93.165139en_US
dc.relation.hasversionhttps://arxiv.org/abs/1602.05954en_US
dash.licenseOAP
dc.titleConfinement transition to density wave order in metallic doped spin liquidsen_US
dc.typeJournal Articleen_US
dc.description.versionAccepted Manuscripten_US
dc.relation.journalPhys. Rev. Ben_US
dash.depositing.authorSachdev, Subir
dc.date.available2016-09-12T17:43:51Z
dc.identifier.doi10.1103/physrevb.93.165139*
dash.contributor.affiliatedAllais, Andrea
dash.contributor.affiliatedChowdhury, Debanjan
dash.contributor.affiliatedPatel, Aavishkar
dash.contributor.affiliatedSachdev, Subir


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