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- W1810614919 abstract "${mathrm{Cu}}_{0.5}{mathrm{Co}}_{0.5}{mathrm{Cl}}_{2}ensuremath{-}mathrm{Fe}{mathrm{Cl}}_{3}$ graphite bi-intercalation compound is a three-dimensional short-range Ising spin glass with a spin freezing temperature ${T}_{c}(=3.92ifmmodepmelsetextpmfi{}0.11phantom{rule{0.3em}{0ex}}mathrm{K})$. The stability of the spin glass phase in the presence of a magnetic field $H$ is examined from (i) the spin freezing temperature ${T}_{f}(ensuremath{omega},H)$ at which the differential field-cooled (FC) susceptibility $ensuremath{partial}{M}_{mathit{FC}}(T,H)∕ensuremath{partial}H$ coincides with the dispersion ${ensuremath{chi}}^{ensuremath{'}}(ensuremath{omega},T,H=0)$ with the angular frequency $ensuremath{omega}$, and (ii) the time dependence of zero-field-cooled (ZFC) susceptibility ${ensuremath{chi}}_{mathit{ZFC}}$ after a ZFC aging protocol with a wait time ${t}_{W}(=1.0ifmmodetimeselsetexttimesfi{}{10}^{4})$. The relaxation rate $S(t)(=d{ensuremath{chi}}_{mathit{ZFC}}∕dphantom{rule{0.2em}{0ex}}mathrm{ln}phantom{rule{0.2em}{0ex}}t)$ exhibits a local maximum at a characteristic time ${t}_{mathit{cr}}$, reflecting nonequilibrium aging dynamics. The peak time ${t}_{mathrm{cr}}(T,H)$ decreases with increasing $H$ at the fixed temperature $T(2.9phantom{rule{0.3em}{0ex}}mathrm{K}ensuremath{leqslant}T<{T}_{c})$. The spin freezing temperature ${T}_{f}(ensuremath{omega},H)$ provides evidence for the instability of the spin glass phase in thermal equilibrium in a finite magnetic field. Both ${t}_{mathit{cr}}(T,H)$ and ${T}_{f}(ensuremath{omega},H)$ exhibit certain scaling behavior predicted from the droplet picture." @default.
- W1810614919 created "2016-06-24" @default.
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- W1810614919 date "2005-09-21" @default.
- W1810614919 modified "2023-09-25" @default.
- W1810614919 title "Aging dynamics across a dynamic crossover line in the three-dimensional short-range Ising spin-glassCu0.5Co0.5Cl2−FeCl3graphite bi-intercalation compound" @default.
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- W1810614919 doi "https://doi.org/10.1103/physrevb.72.104429" @default.
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