Magnetic phase diagram of cuprates and universal scaling laws
arXiv:2501.12889
Abstract
In this article we consider the magnetic field phase diagram of hole-doped high- cuprates, which has been given much less attention than the temperature diagram. In the framework of the {\it pairon model}, we show that the two characteristic energies, the pair binding energy (the gap ) and the condensation energy () resulting from pair correlations, give rise to two major magnetic fields, the upper critical field and a second field, , associated with the pseudogap (PG). The latter implies a second length scale in addition to the coherence length, characteristic of incoherent pairs. Universal scaling laws for both and are derived: scales with the critical temperature, T/K, in agreement with many experiments, and has a similar scaling with respect to . Finally, Fermi arcs centered on the nodal directions are predicted to appear as a function of magnetic field, an effect testable experimentally.
Submitted to Physics Letters A