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Topological circuits of inductors and capacitors

机译:电感器和电容器的拓扑电路

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Alternating current (ac) circuits can have electromagnetic edge modes protected by symmetries, analogous to topological band insulators or semimetals. How to make such a topological circuit? This paper illustrates a particular design idea by analyzing a series of topological circuits consisting purely of inductors (L) and capacitors (C) connected to each other by wires to form periodic lattices. All the examples are treated using a unifying approach based on Lagrangians and the dynamical H-matrix. First, the building blocks and permutation wiring are introduced using simple circuits in one dimension, the SSH transmission line and a braided ladder analogous to the ice-tray model also known as the pi-flux ladder. Then, more general building blocks (loops and stars) and wiring schemes (m-shifts) are introduced. The key concepts of emergent pseudo-spin degrees of freedom and synthetic gauge fields are discussed, and the connection to quantum lattice Hamiltonians is clarified. A diagrammatic notation is introduced to simplify the design and presentation of more complicated circuits. These building blocks are then used to construct topological circuits in higher dimensions. The examples include the circuit analog of Haldane's Chern insulator in two dimensions and quantum Hall insulator in four dimensions featuring finite second Chern numbers. The topological invariants and symmetry protection of the edge modes are discussed based on the H-matrix. (C) 2018 Elsevier Inc. All rights reserved.
机译:交流电流(AC)电路可以具有由对称保护的电磁边缘模式,类似于拓扑带绝缘子或半态。如何制作这样的拓扑电路?本文通过分析一系列纯属电感器(L)和电容器(C)通过导线彼此连接的电容器(C)构成周期性格子来说明特定的设计理念。所有示例都是使用基于拉格朗日和动态H矩阵的统一方法处理。首先,使用一个维度,SSH传输线和编织梯类似于冰盘模型的简单电路,使用简单电路引入构建块和置换布线。然后,介绍了更多的一般构建块(循环和星星)和接线方案(M转移)。讨论了紧急伪自旋自由度和合成规范领域的关键概念,并阐明了与量子格哈菲尔顿人的联系。引入了一种示意符号来简化更复杂电路的设计和呈现。然后使用这些构建块来构建更高尺寸的拓扑电路。这些示例包括哈尔达坦的Chern绝缘体的电路模拟在两个维度和量子霍尔绝缘体中的四个尺寸,其中四个尺寸为具有有限的第二个Chern数。基于H矩阵讨论了边缘模式的拓扑不变和对称性保护。 (c)2018年Elsevier Inc.保留所有权利。

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