Type II superconductivity in SrPd2Ge2
arXiv:1302.1022 · doi:10.1088/0953-2048/26/1/015010
Abstract
Previous investigations have shown that SrPd2Ge2, a compound isostructural with "122" iron pnictides but iron- and pnictogen-free, is a conventional superconductor with a single s-wave energy gap and a strongly three-dimensional electronic structure. In this work we reveal the Abrikosov vortex lattice formed in SrPd2Ge2 when exposed to magnetic field by means of scanning tunneling microscopy and spectroscopy. Moreover, by examining the differential conductance spectra across a vortex and estimating the upper and lower critical magnetic fields by tunneling spectroscopy and local magnetization measurements, we show that SrPd2Ge2 is a strong type II superconductor with κ>> sqrt(2). Also, we compare the differential conductance spectra in various magnetic fields to the pair breaking model of Maki - de Gennes for dirty limit type II superconductor in the gapless region. This way we demonstrate that the type II superconductivity is induced by the sample being in the dirty limit, while in the clean limit it would be a type I superconductor with κ << sqrt(2), in concordance with our previous study (T. Kim et al., Phys. Rev. B 85, (2012)).
9 pages, 4 figures
References in corpus (8)
- Superconductivity at 38 K in the iron arsenide (Ba1-xKx)Fe2As2
- Spin density wave anomaly at 140 K in the ternary iron arsenide BaFe2As2
- Superconductivity up to 37 K in (A1-xSrx)Fe2As2 with A=K and Cs
- High - Temperature Superconductivity in Iron Based Layered Compounds
- Multiple energy scales at a quantum critical point
- (Sr_3Sc_2O_5)Fe_2As_2 as a possible parent compound for FeAs-based superconductors
- Superconductivity without Fe or Ni in the phosphides BaIr2P2 and BaRh2P2
- Scaling of the physical properties in Ba(Fe,Ni)2As2 single crystals: Evidence for quantum fluctuations