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arxiv: 0907.4587 · v1 · pith:LSVSXODOnew · submitted 2009-07-27 · ❄️ cond-mat.supr-con

Electronic and phononic Raman scattering in detwinned YBa₂Cu₃O_(6.95) and Y_(0.85)Ca_(0.15)Ba₂Cu₃O_(6.95): s-wave admixture to the d_(x²-y²)-wave order parameter

classification ❄️ cond-mat.supr-con
keywords electronicramanadmixturephononphononics-wavedetwinnedlight
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Inelastic light (Raman) scattering has been used to study electronic excitations and phonon anomalies in detwinned, slightly overdoped YBa$_2$Cu$_3$O$_{6.95}$ and moderately overdoped Y$_{0.85}$Ca$_{0.15}$Ba$_2$Cu$_3$O$_{6.95}$ single crystals. In both samples modifications of the electronic pair-breaking peaks when interchanging the a- and b-axis were observed. The lineshapes of several phonon modes involving plane and apical oxygen vibrations exhibit pronounced anisotropies with respect to the incident and scattered light field configurations. Based on a theoretical model that takes both electronic and phononic contributions to the Raman spectra into account, we attribute the anisotropy of the superconductivity-induced changes in the phonon lineshapes to a small s-wave admixture to the $d_{x^2-y^2}$ pair wave-function. Our theory allows us to disentangle the electronic Raman signal from the phononic part and to identify corresponding interference terms. We argue that the Raman spectra are consistent with an s-wave admixture with an upper limit of 20 percent.

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