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- W2081622014 abstract "Effects of disorder (or quantum fluctuations) on the vortex phase diagram at low temperature T have been studied on the basis of measurements of dc and ac complex resistivities for thick amorphous MoxSi1−x films with different disorder (normal-state resistivity). Irrespective of disorder, the vortex–glass transition (VGT) persists down to T∼0.05Tc0 up to B∼0.9Bc2(0), where Tc0 and Bc2(0) are the mean-field transition temperature and upper critical field at T=0, respectively. In the limit T=0, the VGT line Bg(T) is independent of T and extrapolates to a field below Bc2(0), indicative of the presence of a quantum–vortex–liquid (QVL) phase at T=0 in the regime Bg(0)<B<Bc2(0). The width of the T=0 QVL phase, [Bc2(0)−Bg(0)]/Bc2(0), is wider for a more disordered film. This result is consistent with a view that the QVL phase is driven by quantum fluctuations, which are enhanced with increasing disorder." @default.
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- W2081622014 date "2002-10-01" @default.
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- W2081622014 title "Quantum liquid of vortices at T=0 in thick a-MoxSi1−x films" @default.
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- W2081622014 doi "https://doi.org/10.1016/s0921-4534(02)01469-7" @default.
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