arXiv · cond-mat/0005315
Gap and subgap tunnelling in cuprates
Abstract
We describe strongly attractive carriers in cuprates in the framework of a simple quasi-one dimensional Hamiltonian with a local attraction. In contrast with the conventional BCS theory there are two energy scales, a temperature independent incoherent gap $Δ_p$ and a temperature dependent coherent gap $Δ_c (T)$ combining into one temperature dependent global gap $Δ=(Δ_p^2 +Δ_c^2)^{1/2}$. The temperature dependence of the gap and single particle (Giaver) tunnelling spectra in cuprates are quantitatively described. A framework for understanding of two distinct energy scales observed in Giaver tunnelling and electron-hole reflection experiments is provided.
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A. S. Alexandrov, A. F. Andreev. 2000-05-25. Gap and subgap tunnelling in cuprates. https://doi.org/10.1209/epl%2Fi2001-00252-0
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