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- W177024861 abstract "We report on the vortex transport in ${mathrm{Bi}}_{2}{mathrm{Sr}}_{2}{mathrm{Ca}}_{1ensuremath{-}x}{mathrm{Y}}_{x}{mathrm{Cu}}_{2}{mathrm{O}}_{8}$ single crystals irradiated in a parallel direction with the c axis with 5.8-GeV Pb ions at fluences of $3.75ifmmodetimeselsetexttimesfi{}{10}^{10}{mathrm{cm}}^{mathrm{ensuremath{-}}2}$ and $7.5ifmmodetimeselsetexttimesfi{}{10}^{10}{mathrm{cm}}^{mathrm{ensuremath{-}}2}.$ A detailed investigation of the vortex transport using current-voltage measurements is carried out with the magnetic field applied along the c axis. First, we investigate the critical behavior of the linear and nonlinear conductivity near the Bose-glass melting line. We obtain field and sample-independent critical exponents ${z}^{ensuremath{'}}$ and ${ensuremath{nu}}^{ensuremath{'}}$ consistent with a compressible Bose glass (i.e., ${ensuremath{nu}}_{ensuremath{parallel}}=2{ensuremath{nu}}_{ensuremath{perp}}ensuremath{equiv}2{ensuremath{nu}}^{ensuremath{'}}).$ Using the values ${z}^{ensuremath{'}}=5.28ifmmodepmelsetextpmfi{}0.05$ and ${ensuremath{nu}}^{ensuremath{'}}=1.04ifmmodepmelsetextpmfi{}0.06,$ the data collapse into two single-scaling functions. Second, we report on conductivity measurements over a wide filling factor ${(B/B}_{ensuremath{varphi}})$ range from 0.04 up to 0.9 within the Bose-glass phase. Our data provide support for a variable-range hopping mechanism for low current densities, in accordance with the ideas of Nelson and Vinokur [Phys. Rev. B 48, 13 060 (1993)]. We determine a glass exponent value of 1/3 for all the filling factors investigated at large ratios of the penetration depth to the average defect distance $({ensuremath{lambda}}_{mathrm{ab}}/densuremath{sim}10).$ This finding implies that no Coulomb gap occurs in the pinning energy spectrum. Furthermore, our results show that for low filling factors (1/2) the on-site disorder plays a major role in the bandwidth of flux-binding energies. Finally, the appearance of a well-defined crossover near half filling is consistent with the field ${B}^{*}$ separating the strongly pinned Bose-glass regime from the weakly pinned Bose-glass regime." @default.
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- W177024861 date "2000-04-01" @default.
- W177024861 modified "2023-10-18" @default.
- W177024861 title "Origin of the variable-range vortex hopping inBi2Sr2Ca1−xYxCu2O8with columnar defects" @default.
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- W177024861 doi "https://doi.org/10.1103/physrevb.61.9800" @default.
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