activity
20182021
most citedTransmission zeros and ultrasensitive detection in complex systems

37 citations · 46 across the 4 of their papers we have counts for

collaborators

6 papers

cond-mat.dis-nn20212 cited

Wave Excitation and Dynamics in Non-Hermitian Disordered Systems

Yiming Huang, Yuhao Kang, Azriel Z. Genack

Dynamic and steady state aspects of wave propagation are deeply connected in lossless open systems in which the scattering matrix is unitary. There is then an equivalence among the…

physics.optics20203 cited

Dynamics of transmission in disordered topological insulators

Yuhao Kang, Yiming Huang, Azriel Z. Genack

Here we show in simulations of the Haldane model that pulse propagation in disordered topological insulators is robust throughout the central portion of the band gap where localize…

cond-mat.dis-nn202037 cited

Transmission zeros and ultrasensitive detection in complex systems

Yuhao Kang, Azriel Z. Genack

Understanding vanishing transmission in Fano resonances in quantum systems and metamaterials, and ultralow transmission in disordered media is key to elucidating optical interactio…

cond-mat.mes-hall2019

Time delay in a disordered topological system

Yuhao Kang, Azriel Z. Genack

The discovery of topological insulators has opened new prospects for robust signal transport for electronic, phononic, and photonic devices. Though transport of topological protect…

cond-mat.mes-hall20194 cited

Cavity-induced backscattering in a two-dimensional photonic topological system

Yuhao Kang, Azriel Z. Genack

The discovery of robust transport via topological states in electronic, photonic and phononic materials has deepened our understanding of wave propagation in condensed matter with…

physics.app-ph2018

Pseudospin-valley coupled edge states in a photonic topological insulator

Yuhao Kang, Xiaojun Cheng, Xiang Ni +2

Pseudo-spin and valley degrees of freedom (DOFs) engineered in photonic analogues of topological insulators (TI) provide potential approaches to optical encoding and robust signal…