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Unconventional London penetration depth in Ba(Fe0.93Co0.07)2As2 single crystals

Superconductivity 2009-03-27 v1

Abstract

The London penetration depth, λ(T)\lambda(T), has been measured in several single crystals of Ba(Fe0.93_{0.93}Co0.07_{0.07})2_2As2_2. Thermodynamic, electromagnetic, and structural characterization measurements confirm that these crystals are of excellent quality. The observed low temperature variation of λ(T)\lambda(T) follows a power-law, Δλ(T)Tn\Delta \lambda (T) \sim T^n with n=2.4±0.1n=2.4 \pm 0.1, indicating the existence of normal quasiparticles down to at least 0.02Tc0.02T_c. This is in contrast to recent penetration depth measurements on single crystals of NdFeAsO1x_{1-x}Fx_x and SmFeAsO1x_{1-x}Fx_x, which indicate an anisotropic but nodeless gap. We propose that a more three-dimensional character in the electronic structure of Ba(Fe0.93_{0.93}Co0.07_{0.07})2_2As2_2 may lead to an anisotropic ss-wave gap with point nodes that would explain the observed λ(T)\lambda(T).

Keywords

Cite

@article{arxiv.0810.2295,
  title  = {Unconventional London penetration depth in Ba(Fe0.93Co0.07)2As2 single crystals},
  author = {R. T. Gordon and N. Ni and C. Martin and M. A. Tanatar and M. D. Vannette and H. Kim and G. Samolyuk and J. Schmalian and S. Nandi and A. Kreyssig and A. I. Goldman and J. Q. Yan and S. L. Bud'ko and P. C. Canfield and R. Prozorov},
  journal= {arXiv preprint arXiv:0810.2295},
  year   = {2009}
}

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4 pages