Amorphization of Vortex Matter and Reentrant Peak Effect in YBa2Cu3O7-δ

Abstract

The peak effect (PE) has been observed in a twinned crystal of YBa2Cu3O7-δ for H in the low field range, close to the zero field superconducting transition temperature (Tc(0)) . A sharp depinning transition succeeds the peak temperature Tp of the PE. The PE phenomenon broadens and its internal structure smoothens out as the field is increased or decreased beyond the interval between 250 Oe and 1000 Oe. Moreover, the PE could not be observed above 10 kOe and below 20 Oe. The locus of the Tp(H) values shows a reentrant characteristic with a nose like feature located at Tp(H)/Tc(0)≈0.99 and H≈100 Oe (where the FLL constant a0≈penetration depth λ). The upper part of the PE curve (0.5 kOe<H<10 kOe) can be fitted to a melting scenario with the Lindemann number cL≈0.25. The vortex phase diagram near Tc(0) determined from the characteristic features of the PE in YBa2Cu3O7-δ(H) bears close resemblance to that in the 2H-NbSe2 system, in which a reentrant PE had been observed earlier.

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