activity
20242026
most citedExtended topological mode in a one-dimensional non-Hermitian acoustic crystal

18 citations · 20 across the 3 of their papers we have counts for

collaborators

9 papers

physics.class-ph202618 cited

Extended topological mode in a one-dimensional non-Hermitian acoustic crystal

Xulong Wang, Wei Wang, Guancong Ma

In Hermitian topological systems, topological modes (TMs) are bound to interfaces or defects of a lattice. Recent discoveries show that non-Hermitian effects can reshape the wavefu…

cond-mat.mtrl-sci2026

Topological phononics

Zeguo Chen, Tiantian Zhang, Xulong Wang +12

Topological phononics extends the foundational concepts of topological condensed matter physics to the realm of lattice vibrations and classical mechanical waves, unlocking robust,…

quant-ph20262 cited

Exceptional deficiency of non-Hermitian systems

Zhen Li, Xulong Wang, Rundong Cai +5

Exceptional points (EPs) are non-Hermitian singularities associated with the coalescence of individual eigenvectors accompanied by the degeneracy of their complex energies. Here, w…

physics.class-ph2025

Experimental Realization of Special-Unitary Operations in Classical Mechanics by Nonadiabatic Evolutions

Congwei Lu, Xulong Wang, Guancong Ma

Artificial classical wave systems such as wave crystals and metamaterials have demonstrated promising capabilities in simulating a wide range of quantum mechanical phenomena. Yet s…

quant-ph2025

Topological Braiding of Bloch Eigenmodes Protected by Non-Abelian Quaternion Invariants

Xiao-Ming Wang, Jiaying Xu, Xulong Wang +2

Braiding has attracted significant attention in physics because of its important role in describing the fundamental exchange of particles. Infusing the braiding with topological pr…

quant-ph2025

Experimental Measurement of Non-Hermitian Left Eigenvectors

Xulong Wang, Guancong Ma

The duality of left and right eigenvectors underpins the comprehensive understanding of many physical phenomena. In Hermitian systems, left and right eigenvectors are simply Hermit…