Topological resonance behaviors of surface acoustic waves under a surface liquid-layer loading and sensing applications

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Wu, Bowei, Ma, Tingfeng, Li, Shuanghuizhi, Fang, Xiang, BoyueSu, Li, Peng, Qian, Zhenghua, Wu, Rongxing, Kuznetsova, Iren, Kolesov, Vladimir
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915438515978240
author Wu, Bowei
Ma, Tingfeng
Li, Shuanghuizhi
Fang, Xiang
BoyueSu
Li, Peng
Qian, Zhenghua
Wu, Rongxing
Kuznetsova, Iren
Kolesov, Vladimir
author_facet Wu, Bowei
Ma, Tingfeng
Li, Shuanghuizhi
Fang, Xiang
BoyueSu
Li, Peng
Qian, Zhenghua
Wu, Rongxing
Kuznetsova, Iren
Kolesov, Vladimir
contents In this work, topological resonance behaviors of surface acoustic waves (SAW) under a surface liquid-layer loading are investigated. By revealing influences of the liquid-layer loading on wave velocity of SAW and topological indices (Berry curvature and Chern number) of topological interface-modes, a topological resonance peak with a high Q-factor is obtained based on couplings of a topological interface-mode waveguide and a resonant cavity under a surface liquid-layer loading. The results show that the degree of spatial-inversion-symmetry breaking resulting from structure parameters has an obvious influences on the topological resonance Q-factor, while the influences of the thickness of the liquid-layer loading on that is weak. It is worth noting that the topological resonance frequency is significantly sensitive to the liquid parameters. Based on that, a novel topological-resonance SAW liquid-phase sensor is proposed. Furthermore, sensing performances of this kind of sensor are simulated, which are used to sensing the concentration of hemoglobin, albumin, NaCl and NaI in aqueous solutions, and high sensitivities and Q-factors are obtained. The results presented in this paper can provide an important basis for the realization of highly sensitive and stable SAW micro-liquid-sample biomedical sensors in the future.
format Preprint
id arxiv_https___arxiv_org_abs_2408_04468
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Topological resonance behaviors of surface acoustic waves under a surface liquid-layer loading and sensing applications
Wu, Bowei
Ma, Tingfeng
Li, Shuanghuizhi
Fang, Xiang
BoyueSu
Li, Peng
Qian, Zhenghua
Wu, Rongxing
Kuznetsova, Iren
Kolesov, Vladimir
Applied Physics
In this work, topological resonance behaviors of surface acoustic waves (SAW) under a surface liquid-layer loading are investigated. By revealing influences of the liquid-layer loading on wave velocity of SAW and topological indices (Berry curvature and Chern number) of topological interface-modes, a topological resonance peak with a high Q-factor is obtained based on couplings of a topological interface-mode waveguide and a resonant cavity under a surface liquid-layer loading. The results show that the degree of spatial-inversion-symmetry breaking resulting from structure parameters has an obvious influences on the topological resonance Q-factor, while the influences of the thickness of the liquid-layer loading on that is weak. It is worth noting that the topological resonance frequency is significantly sensitive to the liquid parameters. Based on that, a novel topological-resonance SAW liquid-phase sensor is proposed. Furthermore, sensing performances of this kind of sensor are simulated, which are used to sensing the concentration of hemoglobin, albumin, NaCl and NaI in aqueous solutions, and high sensitivities and Q-factors are obtained. The results presented in this paper can provide an important basis for the realization of highly sensitive and stable SAW micro-liquid-sample biomedical sensors in the future.
title Topological resonance behaviors of surface acoustic waves under a surface liquid-layer loading and sensing applications
topic Applied Physics
url https://arxiv.org/abs/2408.04468