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Interlayer Tunneling in Bi-2212: Coherency and Charging Effects

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Advances in Superconductivity XII

Abstract

The interlayer tunneling has been studied on high quality Bi-2212 stacks of micron to the submicron lateral size. We found that low temperature and low voltage tunneling I-V characteristics can be self-consistently described by Fermi-liquid model for a d-wave superconductor with a significant contribution from coherent interlayer tunneling. The gap and pseudogap interplay with variation of temperature and magnetic field has been extracted from the I-V characteristics. We consider also the role of charging effects for submicron stacks and the role of the trapped flux for stacks of annular geometry.

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Latyshev, Y.I., Pavlenko, V.N., Kim, SJ., Yamashita, T. (2000). Interlayer Tunneling in Bi-2212: Coherency and Charging Effects. In: Yamashita, T., Tanabe, Ki. (eds) Advances in Superconductivity XII. Springer, Tokyo. https://doi.org/10.1007/978-4-431-66877-0_10

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  • DOI: https://doi.org/10.1007/978-4-431-66877-0_10

  • Publisher Name: Springer, Tokyo

  • Print ISBN: 978-4-431-70270-2

  • Online ISBN: 978-4-431-66877-0

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