arXiv · 1811.06538
Pair Density Wave in the Doped $t$-$J$ Model with Ring Exchange on a Triangular Lattice
Abstract
In our previous work [arXiv:1803.00999, Phys. Rev. Lett. 121, 046401 (2018)], we found a quantum spin liquid phase with a spinon Fermi surface in the two dimensional spin-1/2 Heisenberg model with four-spin ring exchange on a triangular lattice. In this work we dope the spinon Fermi surface phase by studying the $t$-$J$ model with four-spin ring exchange. We perform density matrix renormalization group calculations on four-leg cylinders of a triangular lattice and find that the dominant pair correlation function is that of a pair density wave; i.e., it is oscillatory while decaying with distance with a power law. The doping dependence of the period is studied. This is the first example where pair density wave is the dominant pairing in a generic strongly interacting system where the pair density wave cannot be explained as a composite order and no special symmetry is required.
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Xiao Yan Xu, K. T. Law, Patrick A. Lee. 2019-04-27. Pair Density Wave in the Doped $t$-$J$ Model with Ring Exchange on a Triangular Lattice. https://doi.org/10.1103/physrevlett.122.167001
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