Self Duality and a possible Hall-insulator phase near the superconductor-to-insulator transition in two-dimensional indium-oxide films
arXiv:1504.08115 · doi:10.1073/pnas.1522435113
Abstract
We combine measurements of the longitudinal () and Hall () resistivities of disordered two dimensional amorphous indium-oxide films to study the magnetic-field tuned superconductor to insulator transition (H-SIT) in the limit. At the critical field, , the full resistivity tensor is independent with and within experimental uncertainty in all films (i.e. these appear to be "universal" values), this is strongly suggestive that there is a particle-vortex self-duality at . The transition separates the (presumably) superconducting state at from a "Hall-insulator" phase in which as while approaches a non-zero value smaller than its "classical value" , i.e. . A still higher characteristic magnetic field, , at which the Hall resistance is independent and roughly equal to its classical value, , marks an additional crossover to a highfield regime (probably to a Fermi-insulator) in which and possibly diverges as . We also highlight a profound analogy between the H-SIT and quantum-Hall liquid to insulator transitions (QHIT).
Published as an `Early Edition' on Dec. 28, 2015. Includes Supporting Information
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