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Two-photon topological States in the array of qubits caused by the effective photon-photon interaction

机译:由有效的光子 - 光子相互作用引起的Qubits阵列中的双光子拓扑状态

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We investigate two-photon topological states in the array of nearest-neighbor coupled qubits for two model systems based on the extended version of the Bose-Hubbard Hamiltonian, one of which includes direct two-photon tunneling and an- other one incorporates density-dependent hopping. For both models, we demonstrate that the effective photon-photon interaction gives rise to the topological bandgap and topologically protected edge states of bound photon pairs. We design effective density- dependent hopping by inserting auxiliary frequency-detuned qubits in the appropriate positions in the array, which is feasible to realize, for instance, in existing arrays of transmon qubits. Furthermore, we map our system onto the paradigmatic Su-Schrieffer- Heeger model in the limiting cases illustrating our conclusions by the results of numerical simulations.
机译:我们在基于Bose-Hubbard Hamiltonian的扩展版本的两个模型系统的最近邻居耦合Qubits阵列中调查双光子拓扑状态,其中一个包括直接的双光子隧道和其他依赖于密度 跃迁。 对于两种模型,我们证明了有效的光子 - 光子相互作用导致拓扑带隙和结合光子对的拓扑保护边缘状态。 我们通过在阵列中的适当位置中插入辅助频率障碍Qubits来设计有效的密度跳跃,这是可行的,可以在例如现有的透射码阵列中实现。 此外,我们将系统映射到ParAdiGmatic Su-Schrieffer-Heeger模型中,在限制案例中,通过数值模拟结果的结论。

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