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Emulating non-Abelian topological matter in cold-atom optical lattices

机译:在冷原子光学晶格中模拟非阿贝尔拓扑物质

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摘要

Certain proposed extended Bose-Hubbard models may exhibit topologically ordered ground states with excitations obeying non-Abelian braid statistics. A sufficient tuning of Hubbard parameters could yield excitation braiding rules allowing implementation of a universal set of topologically protected quantum gates. We discuss potential difficulties in realizing a model with a proposed non-Abelian topologically ordered ground state using optical lattices containing bosonic dipoles. Our direct implementation scheme does not realize the necessary anisotropic hopping, anisotropic interactions, and low temperatures.
机译:某些拟议的扩展Bose-Hubbard模型可能表现出拓扑有序的基态,并且其激发遵循非阿贝尔辫状统计。充分调整Hubbard参数可以产生激励编织规则,从而可以实现一组通用的拓扑受保护的量子门。我们讨论了使用包含玻色子偶极子的光学晶格用拟议的非阿贝尔拓扑有序基态实现模型的潜在困难。我们的直接实施方案未实现必要的各向异性跳跃,各向异性相互作用和低温。

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