arXiv · 2410.08533
Linear Nonreciprocal Dynamics of Coupled Modulated Systems
Abstract
Waveguides subject to spatiotemporal modulations are known to exhibit nonreciprocal vibration transmission, whereby interchanging the locations of the source and receiver change the end-to-end transmission characteristics. The scenario of typical interest is unidirectional transmission in long, weakly modulated systems: when transmission is possible in one direction only. Here, with a view toward expanding their potential application as devices, we explore the vibration characteristics of spatiotemporally modulated systems that are short and strongly modulated. Focusing on two coupled systems, we develop a methodology to investigate the nonreciprocal vibration characteristics of both weakly and strongly modulated systems. In particular, we highlight the contribution of phase to nonreciprocity, a feature that is often overlooked. We show that the difference between the transmitted phases is the main contributor to breaking reciprocity in short systems. We clarify the roles of primary and side-band resonances, and their overlaps, in breaking reciprocity. We discuss the influence of modulation amplitude and wavenumber on the resonances of the modulated system.
Explore related subjects
Keep this discovery
Jiuda Wu, Behrooz Yousefzadeh. 2024-10-11. Linear Nonreciprocal Dynamics of Coupled Modulated Systems. https://doi.org/10.1121/10.0035882
Cite the original work for its findings. Save a collection to share your selection of sources.