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- W2067706903 abstract "Based on the analyses of bulk sensitive experimental data on penetration depths, Raman spectra, electron photoemission spectra, etc., G. M. Zhao concluded in a recent paper [Phys. Rev. B 64, 024503 (2001)] that the symmetry of high-${T}_{c}$ superconductors belongs to the $g+s$-wave type. To explore the common and uncommon features of the $g+s$-wave pairing state with respect to the d-wave pairing state, both superconductor-insulator-superconductor junction and superconductor-normal metal-superconductor junction have been studied self-consistently in this paper using the quasiclassical theory. The current phase relation for $g+s$-wave superconductors $ensuremath{Delta}(s,ensuremath{theta})={ensuremath{Delta}}_{0}(s+mathrm{cos}4ensuremath{theta})$ is investigated systematically as functions of s-wave component, crystal orientation angle $ensuremath{beta},$ as well as roughness $ensuremath{rho}$ of the interface layer. Our results show that there exists a critical ${ensuremath{beta}}_{C}$ for a given s and $ensuremath{rho}$ so that the current phase relation approaches asymptotically to $I(ensuremath{varphi}{)=I}_{C}mathrm{sin}(2ensuremath{varphi})$ from $I(ensuremath{varphi}{)=I}_{C}mathrm{sin}(ensuremath{varphi})$ as $stackrel{ensuremath{rightarrow}}{ensuremath{beta}}{ensuremath{beta}}_{C}.$ The order parameter and ${ensuremath{beta}}_{C}ensuremath{-}s$ relation are calculated self-consistently as interface roughness varies. Our results are compared with their counterparts in Josephson junctions with the d-wave pairing state obtained using a similar method." @default.
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- W2067706903 date "2003-11-19" @default.
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- W2067706903 title "Order parameter and current-phase relation in Josephson junctions composed ofg+s-wave superconductors" @default.
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- W2067706903 doi "https://doi.org/10.1103/physrevb.68.184516" @default.
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