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- W237461908 startingPage "4017" @default.
- W237461908 abstract "We report the results of resistivity measurements on ${mathrm{Ce}}_{0.9ensuremath{-}x}{mathrm{La}}_{x}{mathrm{Th}}_{0.1}$ alloys for $x=0.10,0.11,0.14, mathrm{and} 0.17$ in the temperature interval 4.2-300 K and for the pressure range 0-12 kbar. Using these results we have semiquantitatively determined the $Pensuremath{-}T$ phase boundary for the isomorphic $ensuremath{gamma}ensuremath{-}ensuremath{alpha}$ phase transition for each concentration $x$. For $x=0.10,0.11, mathrm{and} 0.14$ the transitions are continuous at zero pressure, first order for pressures within the interval ${P}_{c}^{L}(x)<P<{P}_{c}^{u}(x)$, and continuous for higher pressures $P>{P}_{c}^{u}(x)$. Hence, for these concentrations the phase boundaries terminate at two critical points. For $x=0.17$, all observed transitions are continuous. Hence, in $xensuremath{-}Pensuremath{-}T$ space the surface of first-order transitions terminates at a critical edge (${T}_{c}(x),{P}_{c}(x)$) such that, over an interval of $x,{P}_{c}(x)$ is double valued and such that there is a critical inflection point. These unusual features can be understood qualitatively as following from very general Fermi-liquid properties of the cerium $4f$ electronic system, together with the dilution and negative-pressure effects of alloying with lanthanum. We show that this qualitative description is consistent with existing experimental data." @default.
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- W237461908 date "1984-04-01" @default.
- W237461908 modified "2023-09-23" @default.
- W237461908 title "x−P−Tphase diagram for theγ−αtransition inCe0.9−xLaxTh0.1alloys" @default.
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- W237461908 doi "https://doi.org/10.1103/physrevb.29.4017" @default.
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