Strongly enhanced superconductivity in coupled t-J segments
Abstract
The Hamiltonian is one of the cornerstones in the theoretical study of strongly correlated copper-oxide based materials. Using the density matrix renormalization group method we calculate the phase diagram of the one-dimensional (1D) chain in the presence of a periodic hopping modulation, as a prototype of coupled-segment models. While in the uniform 1D model near half-filling superconducting (SC) state dominates only at unphysically large values of the exchange coupling constant , we show that a small hopping and exchange modulation very strongly reduces the critical coupling to be as low as -- well within the physical regime. The phase diagram as a function of the electron filling also exhibits metallic, insulating line phases and regions of phase separation. We suggest that a SC state is easily stabilized if segments creating local spin-singlet pairing are coupled to each other -- another example is ladder system.
Cite
@article{arxiv.1509.04117,
title = {Strongly enhanced superconductivity in coupled t-J segments},
author = {Sahinur Reja and Jeroen van den Brink and Satoshi Nishimoto},
journal= {arXiv preprint arXiv:1509.04117},
year = {2016}
}
Comments
4 pages + 4 figures; 5 pages + 6 figures