English

Spatially - resolved study of the Meissner effect in superconductors using NV-centers-in-diamond optical magnetometry

Superconductivity 2018-05-09 v1

Abstract

Non-invasive magnetic field sensing using optically - detected magnetic resonance of nitrogen-vacancy (NV) centers in diamond was used to study spatial distribution of the magnetic induction upon penetration and expulsion of weak magnetic fields in several representative superconductors. Vector magnetic fields were measured on the surface of conventional, Pb and Nb, and unconventional, LuNi2_2B2_2C, Ba0.6_{0.6}K0.4_{0.4}Fe2_2As2_2, Ba(Fe0.93_{0.93}Co0.07_{0.07})2_2As2_2, and CaKFe4_4As4_4, superconductors, with diffraction - limited spatial resolution using variable - temperature confocal system. Magnetic induction profiles across the crystal edges were measured in zero-field-cooled (ZFC) and field-cooled (FC) conditions. While all superconductors show nearly perfect screening of magnetic fields applied after cooling to temperatures well below the superconducting transition, TcT_c, a range of very different behaviors was observed for Meissner expulsion upon cooling in static magnetic field from above TcT_c. Substantial conventional Meissner expulsion is found in LuNi2_2B2_2C, paramagnetic Meissner effect (PME) is found in Nb, and virtually no expulsion is observed in iron-based superconductors. In all cases, good correlation with macroscopic measurements of total magnetic moment is found. Our measurements of the spatial distribution of magnetic induction provide insight into microscopic physics of the Meissner effect.

Keywords

Cite

@article{arxiv.1709.02769,
  title  = {Spatially - resolved study of the Meissner effect in superconductors using NV-centers-in-diamond optical magnetometry},
  author = {N. M. Nusran and K. R. Joshi and K. Cho and M. A. Tanatar and W. R. Meier and S. L. Bud'ko and P. C. Canfield and Y. Liu and T. A. Lograsso and R. Prozorov},
  journal= {arXiv preprint arXiv:1709.02769},
  year   = {2018}
}