Emergence of Exceptional Points in Periodic Metastructures With Hidden Parity-Time Symmetric Defects

Author:

Fang Yanghao1,Kottos Tsampikos2,Thevamaran Ramathasan3

Affiliation:

1. University of Wisconsin-Madison Department of Materials Science and Engineering, , Madison, WI 53706

2. Wesleyan University Wave Transport in Complex Systems Lab, Department of Physics, , Middletown, CT 06459

3. University of Wisconsin-Madison Department of Engineering Physics, , Madison, WI 53706

Abstract

Abstract We study the elastodynamics of a periodic metastructure incorporating a defect pair that enforces a parity-time (PT) symmetry due to judiciously engineered imaginary impedance elements—one having energy amplification (gain) and the other having an equivalent attenuation (loss) mechanism. We show that their presence affects the initial band structure of the periodic Hermitian metastructure and leads to the formation of numerous exceptional points (EPs) which are mainly located at the band edges where the local density of modes is higher. The spatial location of the PT-symmetric defect serves as an additional control over the number of emerging EPs in the corresponding spectra as well as the critical non-Hermitian (gain/loss) strength required to create the first EP—a specific defect location minimizes the critical non-Hermitian strength. We use both finite element and coupled-mode-theory-based models to investigate these metastructures and use a time-independent second-order perturbation theory to further demonstrate the influence of the size of the metastructure and the PT-symmetric defect location on the minimum non-Hermitian strength required to create the first EP in a band. Our findings motivate feasible designs for the experimental realization of EPs in elastodynamic metastructures.

Funder

Division of Civil, Mechanical and Manufacturing Innovation

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference39 articles.

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