English

Intermediate scattering potential strength in electron-irradiated $\text{YBa}_{2}\text{Cu}_{3}\text{O}_{7-\delta}$ from London penetration depth measurements

Superconductivity 2022-04-18 v2

Abstract

Temperature-dependent London penetration depth, λ(T)\lambda(T), of a high quality optimally-doped YBa2Cu3O7δ\text{YBa}_{2}\text{Cu}_{3}\text{O}_{7-\delta} single crystal was measured using tunnel-diode resonator. Controlled artificial disorder was induced at low-temperature of 20~K by 2.5 MeV electron irradiation at accumulating large doses of 3.8×10193.8\times10^{19} and 5.3×10195.3\times10^{19} electrons per cm2\textrm{cm}^{2}. The irradiation caused significant suppression of the superconductor's critical temperature, TcT_{c}, from 94.6 K to 90.0 K, and then to 78.7 K, respectively. The low-temperature behavior of λ(T)\lambda\left(T\right) evolves from a TT-linear in pristine state to a T2T^{2}-behavior after the irradiation, expected for a line-nodal dd-wave superconductor. However, the original theory that explained such behavior had assumed a unitary limit of the scattering potential, whereas usually in normal metals and semiconductors, Born scattering is sufficient to describe the experiment. To estimate the scattering potential strength, we calculated the normalized superfluid density, ρs(t=T/Tc)=λ2(0)/λ2(t)\rho_{s}\left(t=T/T_{c}\right)=\lambda^{2}\left(0\right)/\lambda^{2}\left(t\right), varying the amount and the strength of non-magnetic scattering using a self-consistent tt-matrix theory. Fitting the obtained curves to a power-law, ρs=1Rtn\rho_{s}=1-Rt^{n}, and to a polynomial, ρs=1AtBt2\rho_{s}=1-At-Bt^{2}, and comparing the coefficients nn in one set, and AA and BB in another with the experimental values, we estimate the phase shift to be around 70^{\circ} and 65^{\circ}, respectively. We correlate this result with the evolution of the density of states with non-magnetic disorder.

Keywords

Cite

@article{arxiv.2109.07608,
  title  = {Intermediate scattering potential strength in electron-irradiated $\text{YBa}_{2}\text{Cu}_{3}\text{O}_{7-\delta}$ from London penetration depth measurements},
  author = {Kyuil Cho and M. Konczykowski and S. Teknowijoyo and S. Ghimire and M. A. Tanatar and Vivek Mishra and R. Prozorov},
  journal= {arXiv preprint arXiv:2109.07608},
  year   = {2022}
}