Anisotropy in the vortex phase diagram and the pinning force density in the basal plane of YNi2B2C
β Scribed by Pradip Das; C.V. Tomy; H. Takeya; S. Ramakrishnan; A.K. Grover
- Publisher
- Elsevier Science
- Year
- 2009
- Tongue
- English
- Weight
- 634 KB
- Volume
- 469
- Category
- Article
- ISSN
- 0921-4534
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β¦ Synopsis
We present the magnetic field dependence of the critical current density from dc magnetization measurements concerning the anisotropic behaviour of flux line lattice (FLL) in a single crystal of YNi 2 B 2 C. The peak effect (PE) phenomenon is observed for all crystallographic orientations, but the second magnetization peak (SMP) anomaly is observed only for Hka. Our study reveals that the FLL obtained when HkΒ½1 1 0 is better ordered within the basal plane. However, the FLL for Hkc is found to be even more ordered than that for HkΒ½1 1 0. The perfect square symmetry of the FLL for Hkc is perhaps responsible for promoting the realization of the best spatial order of the FLL prior to the onset of the PE, indicating a correlation between the crystalline lattice and the vortex lattice. We have also found a change over in the power law governing the decay of the critical current density which is identified as a crossover from weak to weaker pinning regime in the phase diagram.
π SIMILAR VOLUMES
We report an unusual magnetization behavior observed by DC susceptibility measurements in the superconducting state of YNi2BzC and ErNi~BEC compounds after relatively fast cooling in zero or in magnet-remanent field. The magnetization of both substances exhibited an incomplete flux expulsion and evo