论文标题
光子晶格中的非亚伯式aharonov-bohm笼
Non-Abelian Aharonov-Bohm Caging in Photonic Lattices
论文作者
论文摘要
Aharonov-bohm(AB)笼子是由于穿透磁场引起的破坏性干扰而导致的转换晶格的定位效果。虽然当前的研究主要集中在Abelian AB笼子的情况下,但我们在这里超越并通过考虑具有非亚洲背景仪表领域的1D多组分菱形晶状体中的粒子定位来超越并发展非亚伯腹笼概念。与其阿贝利亚对应物相反,非亚伯式的AB笼子既取决于Nilpotent干扰矩阵的形式和晶格的初始状态。这种现象是仪表势非阿布尔性质的结果,因此没有阿贝尔类似物。我们进一步提出了所提出的物理学的电路量子电动力学实现,其中可以通过参数转换方法合成所需的非亚洲量规场,并且可以通过泵送和仅在lattice上的几个位点的稳态测量值来清楚地证明非亚洲AB笼。仅需要当前可用的技术,我们的建议可以在实验中很容易测试,并且可以为研究外来光子量子液体的新途径铺平道路。
Aharonov-Bohm (AB) caging is the localization effect in translational-invariant lattices due to destructive interference induced by penetrated magnetic fields. While current research focuses mainly on the case of Abelian AB caging, here we go beyond and develop the non-Abelian AB caging concept by considering the particle localization in a 1D multi-component rhombic lattice with non-Abelian background gauge field. In contrast to its Abelian counterpart, the non-Abelian AB cage depends on both the form of the nilpotent interference matrix and the initial state of the lattice. This phenomena is the consequence of the non-Abelian nature of the gauge potential and thus has no Abelian analog. We further propose a circuit quantum electrodynamics realization of the proposed physics, in which the required non-Abelian gauge field can be synthesized by the parametric conversion method, and the non-Abelian AB caging can be unambiguously demonstrated through the pumping and the steady-state measurements of only a few sites on the lattice. Requiring only currently available technique, our proposal can be readily tested in experiment and may pave a new route towards the investigation of exotic photonic quantum fluids.