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- W1775773910 abstract "We show here that the regularization of the conductivity resulting from the bosonic interactions on the ``insulating'' (quantum-disordered) side of an insulator-superconductor transition in two dimensions, gives rise to a metal with a finite conductivity, $ensuremath{sigma}=(2/ensuremath{pi}{)4e}^{2}/h,$ as temperature tends to zero. The Bose metal is stable to weak disorder and hence represents a concrete example of an interaction-induced metallic phase. The phenomenological inclusion of dissipation reinstates the anticipated insulating behavior in the quantum-disordered regime. Hence, we conclude that the traditionally studied insulator-superconductor transition, which is driven solely by quantum fluctuations, corresponds to a superconductor-metal transition. The possible relationship to experiments on superconducting thin films in which a low-temperature metallic phase has been observed is discussed." @default.
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- W1775773910 date "2001-07-13" @default.
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- W1775773910 title "Interaction-induced Bose metal in two dimensions" @default.
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- W1775773910 doi "https://doi.org/10.1103/physrevb.64.052507" @default.
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