Experimentally Accessible Scheme for a Fractional Chern Insulator in Rydberg Atoms

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Abstract

We present a setup with Rydberg atoms for the realization of a bosonic fractional Chern insulator in artificial matter. The suggested setup relies on Rydberg atoms arranged in a honeycomb lattice, where excitations hop through the lattice by dipolar exchange interactions and can be interpreted as hard-core bosons. The quantum many-body Hamiltonian is studied within exact diagonalization and the density-matrix renormalization group. We identify experimentally accessible parameters where all signatures indicate the appearance of a fractional state with the same topological properties as the ν=1/2 bosonic Laughlin state. We demonstrate an adiabatic ramping procedure, which allows for the preparation of the topological state in a finite system, and demonstrate an experimentally accessible smoking-gun signature for the fractional excitations.

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Weber, S., Bai, R., Makki, N., Mögerle, J., Lahaye, T., Browaeys, A., … Büchler, H. P. (2022). Experimentally Accessible Scheme for a Fractional Chern Insulator in Rydberg Atoms. PRX Quantum, 3(3). https://doi.org/10.1103/PRXQuantum.3.030302

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