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- W107652210 abstract "We report evidence of two superconducting phases in the ${text{Ce}}_{2}{text{Rh}}_{1ensuremath{-}x}{text{Ir}}_{x}{text{In}}_{8}$ heavy fermion systems. One of these phases is pressure induced and occurs for a range of compositions situated near the Rh-rich extreme, consistent with the behavior observed for the pure ${text{Ce}}_{2}{text{RhIn}}_{8}$ compound. This superconducting region is expanded to higher critical temperatures and lower Rh concentrations with increasing pressure. It has a clear interplay with the established antiferromagnetic state, ${T}_{N}ensuremath{sim}2.8text{ }text{K}$, suggesting that magnetic fluctuations are important for its realization. The second superconducting phase appears already at ambient pressure and it is characterized by a dome centered around $xensuremath{sim}0.6$ which, in sharp contrast with the first transition, is progressively eliminated by the application of pressure. These strikingly opposite behaviors under the same tuning parameter indicate the two transitions may have different natures. We compare these findings in the ${text{Ce}}_{2}{text{Rh}}_{1ensuremath{-}x}{text{Ir}}_{x}{text{In}}_{8}$ alloys to its related ${text{CeRh}}_{1ensuremath{-}x}{text{Ir}}_{x}{text{In}}_{5}$, arguing that the occurrence of the superconducting phases become unfavorable for the bilayers alloys due to higher dimensionality and stronger disorder. Further, we discuss whether the present results warrant similar claims with respect to the ${text{CeRh}}_{1ensuremath{-}x}{text{Ir}}_{x}{text{In}}_{5}$ phase diagram and the possible nature of the superconducting phases." @default.
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- W107652210 date "2010-11-10" @default.
- W107652210 modified "2023-10-15" @default.
- W107652210 title "Residual superconducting phases in the disorderedCe2Rh1−xIrxIn8alloys" @default.
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- W107652210 doi "https://doi.org/10.1103/physrevb.82.184517" @default.
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