arXiv Open Access 2004

Competing orders II: the doped quantum dimer model

Leon Balents Lorenz Bartosch Anton Burkov Subir Sachdev K. Sengupta
Lihat Sumber

Abstrak

We study the phases of doped spin S=1/2 quantum antiferromagnets on the square lattice, as they evolve from paramagnetic Mott insulators with valence bond solid (VBS) order at zero doping, to superconductors at moderate doping. The interplay between density wave/VBS order and superconductivity is efficiently described by the quantum dimer model, which acts as an effective theory for the total spin S=0 sector. We extend the dimer model to include fermionic S=1/2 excitations, and show that its mean-field, static gauge field saddle points have projective symmetries (PSGs) similar to those of `slave' particle U(1) and SU(2) gauge theories. We account for the non-perturbative effects of gauge fluctuations by a duality mapping of the S=0 dimer model. The dual theory of vortices has a PSG identical to that found in a previous paper (L. Balents et al., cond-mat/0408329) by a duality analysis of bosons on the square lattice. The previous theory therefore also describes fluctuations across superconducting, supersolid and Mott insulating phases of the present electronic model. Finally, with the aim of describing neutron scattering experiments, we present a phenomenological model for collective S=1 excitations and their coupling to superflow and density wave fluctuations.

Penulis (5)

L

Leon Balents

L

Lorenz Bartosch

A

Anton Burkov

S

Subir Sachdev

K

K. Sengupta

Format Sitasi

Balents, L., Bartosch, L., Burkov, A., Sachdev, S., Sengupta, K. (2004). Competing orders II: the doped quantum dimer model. https://arxiv.org/abs/cond-mat/0409470

Akses Cepat

Lihat di Sumber
Informasi Jurnal
Tahun Terbit
2004
Bahasa
en
Sumber Database
arXiv
Akses
Open Access ✓