English

Phase-sensitive Harmonic Measurements of Microwave Nonlinearities in Cuprate Thin Films

Superconductivity 2010-03-02 v1

Abstract

Investigations of the intrinsic electromagnetic nonlinearity of superconductors give insight into the fundamental physics of these materials. Phase-sensitive third-order harmonic voltage data u~3f=u3fexp(iϕ3f)\tilde{u}_{3f}=|u_{3f}|exp(i\phi_{3f}) are acquired with a near-field microwave microscope on homogeneous YBa2_2Cu3_3O7δ_{7-\delta} (YBCO) thin films in a temperature range close to the critical temperature Tc_c. As temperature is increased from below Tc_c, the harmonic magnitude exhibits a maximum, while the phase, π/2\pi/2 in the superconducting state, goes through a minimum. It is found that samples with doping ranges from near optimal (δ=0.16\delta=0.16) to underdoped (δ=0.47\delta=0.47) exhibit different behavior in terms of both the harmonic magnitude and phase. In optimally-doped samples, the harmonic magnitude reaches its maximum at a temperature TMT_M slightly lower than that associated with the minimum of phase TmT_m and drops into the noisefloor as soon as TmT_m is exceeded. In underdoped samples TMT_M is shifted toward lower temperatures with respect to TmT_m and the harmonic voltage magnitude decreases slower with temperature than in the case of optimally-doped samples. A field-based analytical model of u~3f\tilde{u}_{3f} is presented, where the nonlinear behavior is introduced as corrections to the low-field, linear-response complex conductivity. The model reproduces the low-temperature regime where the σ2\sigma_2 nonlinearity dominates, in agreement with published theoretical and experimental results. Additionally the model identifies TmT_m as the temperature where the order parameter relaxation time becomes comparable to the microwave probing period and reproduces semi-quantitatively the experimental data.

Keywords

Cite

@article{arxiv.0909.2338,
  title  = {Phase-sensitive Harmonic Measurements of Microwave Nonlinearities in Cuprate Thin Films},
  author = {Dragos I. Mircea and Hua Xu and Steven M. Anlage},
  journal= {arXiv preprint arXiv:0909.2338},
  year   = {2010}
}

Comments

Accepted for publication at Physical Review B