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Anisotropic quantum quench in the presence of frustration or background gauge fields: A probe of bulk currents and topological chiral edge modes

机译:沮丧或背景规范场存在下的各向异性量子猝灭:体电流和拓扑手性边模的探究

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摘要

Bosons and fermions, in the presence of frustration or background gauge fields, can form many-body ground states that support equilibrium charge or spin currents. Motivated by the experimental creation of frustration or synthetic gauge fields in ultracold atomic systems, we propose a general scheme by which making a sudden anisotropic quench of the atom tunneling across the lattice and tracking the ensuing density modulations provides a powerful and gauge-invariant route to probing diverse equilibrium current patterns. Using illustrative examples of trapped superfluid Bose and normal Fermi systems in the presence of artificial magnetic fluxes on square lattices, and frustrated bosons in a triangular lattice, we show that this scheme to probe equilibrium bulk current order works independent of particle statistics. We also show that such quenches can detect chiral edge modes in gapped topological states, such as quantum Hall or quantum spin Hall insulators.
机译:玻色子和费米子在有挫折感或背景规范场的情况下,会形成支持平衡电荷或自旋电流的多体基态。受超冷原子系统中的挫折或合成规范场实验创建的推动,我们提出了一种通用方案,通过该方案,使穿过隧道的原子突然各向异性猝灭并跟踪随后的密度调制,从而提供了一条有力且规范不变的途径探索各种平衡电流模式。使用在正方形晶格上存在人工磁通量而在三角形晶格中存在受挫玻色子的情况下,所俘获的超流体Bose系统和正常Fermi系统的示例,我们证明了这种探测平衡体电流阶数的方案与粒子统计无关。我们还表明,此类猝灭可以检测处于带隙拓扑状态(例如量子霍尔或量子自旋霍尔绝缘体)的手性边缘模式。

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