English

Abnormal Frequency Response Determined by Saddle Points in Non-Hermitian Crystal Systems

Other Condensed Matter 2024-10-10 v2 Optics

Abstract

In non-Hermitian crystal systems under open boundary condition (OBC), it is generally believed that the OBC modes with frequencies containing positive imaginary parts, when excited by external driving, will experience exponential growth in population, thereby leading to instability. However, our work challenges this conventional understanding. In such a system, we find an anomalous response that grows exponentially with the frequency aligned with those of saddle points. The frequencies of these saddle points on the complex plane are below the maximum imaginary part of OBC spectrum, but they can lie within or beyond the OBC spectrum. We derive general formulas of excitation-response relationships and find that this anomalous response can occur because the excitation of OBC modes eventually evolve toward these saddle points at long times. Only when the frequencies of all these saddle points are below the real axis do the non-Hermitian crystal systems remain stable under periodic excitation. Thus our results also provide new insights on the stability criterion of non-Hermitian crystal systems.

Keywords

Cite

@article{arxiv.2406.19992,
  title  = {Abnormal Frequency Response Determined by Saddle Points in Non-Hermitian Crystal Systems},
  author = {Kunling Zhou and Jun Zhao and Bowen Zeng and Yong Hu},
  journal= {arXiv preprint arXiv:2406.19992},
  year   = {2024}
}

Comments

5 pages, 4 figures

R2 v1 2026-06-28T17:22:45.074Z