Orientational coupling between the vortex lattice and the crystalline lattice in a weakly pinned Co0.0075NbSe2 single crystal
arXiv:1506.02057 · doi:10.1088/0953-8984/28/16/165701
Abstract
We report experimental evidence of strong orientational coupling between the crystal lattice and the vortex lattice in a weakly pinned Co-doped NbSe2 single crystal through direct imaging using low temperature scanning tunneling microscopy/spectroscopy. At low fields, when the magnetic field is applied along the six-fold symmetric c-axis of the NbSe2 crystal, the equilibrium configuration of the vortex lattice is preferentially aligned along the basis vectors of the crystal lattice. The orientational coupling between the vortex lattice and crystal lattice becomes more pronounced as the magnetic field is increased. We show that this coupling enhances the stability of the orientational order of the vortex lattice, which persists even in the disordered state at high fields where dislocations and disclinations have destroyed the topological order.
Expanded with additional data
References in corpus (7)
- Visualizing Nodal Heavy Fermion Superconductivity in CeCoIn5
- Intrinsic atomic scale modulations of the superconducting gap of 2H-NbSe2
- Enhancement of long range correlations in a 2D vortex lattice by incommensurate 1D disorder potential
- Ordered, disordered and coexistent stable vortex lattices in NbSe_2 single crystals
- Two step disordering of the vortex lattice across the peak effect in a weakly pinned Type II superconductor, Co0.0075NbSe2
- Scanning tunneling spectroscopy with superconducting tips of Al
- A 350 mK, 9 T scanning tunneling microscope for the study of superconducting thin films and single crystals
Cited by in corpus (4)
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- Enigma of the vortex state in a strongly correlated d-wave superconductor
- Two characteristic contributions to the superconducting state of 2-NbSe