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合成光子晶格中的费米弧重构

Fermi Arc Reconstruction in Synthetic Photonic Lattice.

作者信息

Nguyen D-H-Minh, Devescovi Chiara, Nguyen Dung Xuan, Nguyen Hai Son, Bercioux Dario

机构信息

Donostia International Physics Center, 20018 Donostia-San Sebastián, Spain.

Center for Theoretical Physics of Complex Systems, Institute for Basic Science (IBS), Daejeon, 34126, Republic of Korea.

出版信息

Phys Rev Lett. 2023 Aug 4;131(5):053602. doi: 10.1103/PhysRevLett.131.053602.

Abstract

The chiral surface states of Weyl semimetals have an open Fermi surface called a Fermi arc. At the interface between two Weyl semimetals, these Fermi arcs are predicted to hybridize and alter their connectivity. In this Letter, we numerically study a one-dimensional (1D) dielectric trilayer grating where the relative displacements between adjacent layers play the role of two synthetic momenta. The lattice emulates 3D crystals without time-reversal symmetry, including Weyl semimetal, nodal line semimetal, and Chern insulator. Besides showing the phase transition between Weyl semimetal and Chern insulator at telecom wavelength, this system allows us to observe the Fermi arc reconstruction between two Weyl semimetals, confirming the theoretical predictions.

摘要

外尔半金属的手性表面态具有一种名为费米弧的开放费米面。在两个外尔半金属的界面处,预计这些费米弧会发生杂化并改变其连通性。在本信函中,我们对一维(1D)介质三层光栅进行了数值研究,其中相邻层之间的相对位移起到两个合成动量的作用。该晶格模拟了没有时间反演对称性的三维晶体,包括外尔半金属、节线半金属和陈绝缘体。除了展示在电信波长下外尔半金属和陈绝缘体之间的相变外,该系统还使我们能够观察到两个外尔半金属之间的费米弧重构,证实了理论预测。

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