activity
20182022
most citedGain and loss induced topological insulating phase in a non Hermitian electrical circuit

164 citations · 200 across the 3 of their papers we have counts for

collaborators

6 papers

cond-mat.mes-hall2022

Bulk-LDOS Correspondence in Topological Insulators

Biye Xie, Renwen Huang, Shiyin Jia +9

Seeking the criterion for diagnosing topological phases in real materials has been one of the major tasks in topological physics. Currently, bulk-boundary correspondence based on s…

cond-mat.mes-hall2022164 cited

Gain and loss induced topological insulating phase in a non Hermitian electrical circuit

Shuo Liu, Shaojie Ma, Cheng Yang +5

There have been considerable efforts devoted to the study of topological phases in certain non-Hermitian systems that possess real eigenfrequencies in the presence of gain and loss…

physics.optics202236 cited

Intrinsic Superflat Bands in General Twisted Bilayer Systems

Hongfei Wang, Shaojie Ma, Shuang Zhang +1

Twisted bilayer systems with discrete magic angles, such as twisted bilayer graphene featuring moiré superlattices, provide a versatile platform for exploring novel physical proper…

physics.optics2019

Observation of non-Abelian nodal links in photonics

Erchan Yang, Biao Yang, Oubo You +8

In crystals, two bands may cross each other and form degeneracies along a closed loop in the three-dimensional momentum space, which is called nodal line. Nodal line degeneracy can…

physics.optics2018

Symmetry selective Dynamic Casimir Effect in One-Dimensional Photonic Crystals

Shaojie Ma, Haixing Miao, Yuanjiang Xiang +1

Real photon pairs can be created in a dynamic cavity with periodically modulated refractive index of the constituent media or oscillating boundaries. This effect is called Dynamic…

cond-mat.mtrl-sci2018

Broadband terahertz generation via the interface inverse Rashba-Edelstein effect

C. Zhou, Y. P. Liu, Z. Wang +8

Novel mechanisms for electromagnetic wave emission in the terahertz (THz) frequency regime emerging at the nanometer scale have recently attracted intense attention for the purpose…