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Vector field controlled vortex lattice symmetry in LiFeAs

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arxiv 1802.10059 v2 pith:UZNTGWIO submitted 2018-02-27 cond-mat.supr-con

Vector field controlled vortex lattice symmetry in LiFeAs

classification cond-mat.supr-con
keywords fieldlatticevortexpairingsymmetrycooperlifeasmethod
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We utilize a combination of vector magnetic field and scanning tunneling microscopy to elucidate the 3D field-based electronic phase diagram of a correlated iron-based superconductor, LiFeAs. We observe, under a zero-field-cooled method, an ordered hexagonal vortex lattice ground-state in contrast to the disordered lattice observed under a field-cooled method. It transforms into a four-fold-symmetric state by increasing c-axis field and distorts elliptically upon tilting the field in-plane. The vortex lattice transformations correlate with the field dependent superconducting gap that characterizes the Cooper pairing strength. The anisotropy of the vortex lattice agrees with the field enhanced Bogoliubov quasiparticle scattering channel that is determined by the pairing symmetry with respect to its Fermi surface structure. Our systematic tuning of the vortex lattice symmetry and study of its correlation with Cooper pairing demonstrates the many-body interplay between the superconducting order parameter and emergent vortex matter.

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