English

Zero-crossing Shapiro steps in focused-ion-beam-tailored high-$T_c$ superconducting microstructures

Superconductivity 2008-02-15 v1

Abstract

Microwave response of S-shaped Bi2_2Sr2_2CaCu2O8+x_{8+x} (Bi-2212) micron-scale samples, in which the supercurrent was forced to flow perpendicular to the crystal layers, was investigated. A treatment with a focused ion beam allowed us to reduce the plasma frequency down to fpf_p\sim5 GHz at TT=0.3 K in naturally stacked Josephson junctions in a crystal. We observed Shapiro steps at frequencies as low as \sim5 GHz. Well-developed zero-crossing Shapiro steps were observed at frequencies as low as \sim10 GHz. They appeared as constant-voltage plateaus with a non-zero voltage occurring at zero bias current. We confirmed that zero-crossing Shapiro steps in the Bi-2212 stacked junctions can be observed when the irradiated frequency is sufficiently larger than fpf_p. The observed high-order fractional steps in the microwave responses indicate that the interlayer-coupled Bi-2212 Josephson junctions have nonsinusoidal current-phase relation. Based on the temperature dependence of the steps we also showed that the finite slope of the steps is due to the enhancement of the phase diffusion effect.

Keywords

Cite

@article{arxiv.0802.2091,
  title  = {Zero-crossing Shapiro steps in focused-ion-beam-tailored high-$T_c$ superconducting microstructures},
  author = {Myung-Ho Bae and R. C. Dinsmore and M. Sahu and Hu-Jong Lee and A. Bezryadin},
  journal= {arXiv preprint arXiv:0802.2091},
  year   = {2008}
}

Comments

accepted in Phys. Rev. B

R2 v1 2026-06-21T10:12:43.781Z