论文标题
电路系统中的非亚洲仪表场
Non-abelian gauge fields in circuit systems
论文作者
论文摘要
电路可以提供一个研究新物理学的平台,并已被使用,例如探索各种拓扑阶段。轨距领域尤其是非亚洲仪表范围 - 范围在新型物理状态的设计和调制中起着关键作用,但到目前为止,它们的电路实施受到限制。在这里,我们表明,可以用由电容器,电感器和电阻组成的构建块创建的电路中合成非亚伯仪轨道。借助这些构建块,我们为自旋轨道相互作用和拓扑结构状态创建电路设计,这些现象是代表动量空间中非亚洲仪表场的现象。我们还使用该方法来设计非重点电路,这些电路可用于在真实空间中实现非亚洲Aharonov-bohm效应。
Circuits can provide a platform to study novel physics and have been used, for example, to explore various topological phases. Gauge fields-particularly, non-Abelian gauge fields-can play a pivotal role in the design and modulation of novel physical states, but their circuit implementation has so far been limited. Here we show that non-Abelian gauge fields can be synthesized in circuits created from building blocks that consist of capacitors, inductors and resistors. With these building blocks, we create circuit designs for the spin-orbit interaction and the topological Chern state, which are phenomena that represent non-Abelian gauge fields in momentum space. We also use the approach to design non-reciprocal circuits that can be used to implement the non-Abelian Aharonov-Bohm effect in real space.