Affiliation:
1. National Laboratory of Solid State Microstructures Department of Materials Science and Engineering Jiangsu Key Laboratory of Artificial Functional Materials Nanjing University Nanjing 210093 China
2. School of Materials Science and Intelligent Engineering Shishan Laboratory Nanjing University Suzhou Jiangsu 215163 China
Abstract
AbstractCoherent phonon transfer via high‐quality factor (Q) mechanical resonator strong coupling has garnered significant interest. Yet, the practical applications of these strongly coupled resonator devices are largely constrained by their vulnerability to fabrication defects. In this study, topological strong coupling of gigahertz frequency surface acoustic wave (SAW) resonators with lithium niobate is achieved. The nanoscale grooves are etched onto the lithium niobate surface to establish robust SAW topological interface states (TISs). By constructing phononic crystal (PnC) heterostructures, a strong coupling of two SAW TISs, achieving a maximum Rabi splitting of 22 MHz and frequency quality factor product fQm of ≈1.2 × 1013 Hz, is realized. This coupling can be tuned by adjusting geometric parameters and a distinct spectral anticrossing is experimentally observed. Furthermore, a dense wavelength division multiplexing device based on the coupling of multiple TISs is demonstrated. These findings open new avenues for the development of practical topological acoustic devices for on‐chip sensing, filtering, phonon entanglement, and beyond.
Funder
National Natural Science Foundation of China
National Key Research and Development Program of China
China Postdoctoral Science Foundation
Cited by
3 articles.
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