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D. Kuzmanovski

Publications and source records attributed to D. Kuzmanovski.

2 recordsLinked to original sources

Signatures of odd-frequency pairing in the Josephson junction current noise

Odd frequency (odd-$ω$) electron pair correlations naturally appear at the interface between BCS superconductors and other materials. The detection of odd-$ω$ pairs, which are necessarily non-local in time, is still an open problem. The main reason is that they do not contribute to static measurements described by time-local correlation functions. Therefore, dynamical measurements, which depend on non-local time correlations, are suitable for detecting these pairs. In this work, we study the signatures of odd-$ω$ pairs in the supercurrent noise through a weak link between two superconductors at different superconducting phases. We show that the finite frequency current noise can be decomposed into three different contributions coming from even frequency (even-$ω$), odd-$ω$ pair amplitudes, and electron-hole correlation functions. Odd-$ω$ pairing, which is inter-lead (between electrons at different sides of the junction), provides a positive contribution to the noise, becoming maximal at a superconducting phase difference of $π$. In contrast, intra-lead even-$ω$ pair amplitude tends to reduce the noise, except for a region close to $π$, controlled by the transmission of the junction.

cond-mat.mes-hall

Effect of SDW fluctuations on the specific heat jump in iron pnictides at a superconducting transition

Measurements of the specific heat jump at the onset of superconducting transition in the iron-pnictide compounds revealed strong variation of its magnitude as a function of doping that is peaked near the optimal doping. We show that this behavior is direct manifestation of the coexistence between spin-density-wave and superconducting orders and the peak originates from thermal fluctuations of the spin-density-waves near the end point of the coexistence phase -- a tetracritical point. Thermal fluctuations result in a power-law dependence of the specific heat jump that is stronger than the contribution of mass renormalization due to quantum fluctuations of spin-density-waves in the vicinity of the putative critical point beneath the superconducting dome.

cond-mat.supr-con