Quasiparticle Berry curvature and Chern numbers in spin-orbit-coupled bosonic Mott insulators

Publication date

2013

Authors

Wong, Clement H.ISNI 0000000507798198
Duine, Rembert A.ISNI 0000000387951716

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Article
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Abstract

We study the ground-state topology and quasiparticle properties in bosonic Mott insulators with twodimensional spin-orbit couplings in cold atomic optical lattices. We show that the many-body Chern and spin-Chern number can be expressed as an integral of the quasihole Berry curvatures over the Brillouin zone. Using a strong-coupling perturbation theory, for an experimentally feasible spin-orbit coupling, we compute the Berry curvature and the spin Chern number and find that these quantities can be generated purely by interactions. We also compute the quasiparticle dispersions, spectral weights, and the quasimomentum space distribution of particle and spin density, which can be accessed in cold-atom experiments and used to deduce the Berry curvature and Chern numbers.

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Wong, C H & Duine, R A 2013, 'Quasiparticle Berry curvature and Chern numbers in spin-orbit-coupled bosonic Mott insulators', Physical Review A - Atomic, Molecular, and Optical Physics, vol. 88, 053631. https://doi.org/10.1103/PhysRevA.88.053631