论文标题

超高分辨率无线电容读数基于单个真实模式,在扰动的平价时间对称三明治型电子序列中

Ultrahigh-Resolution Wireless Capacitance Readout Based on Single Real Mode in Perturbed Parity-Time-Symmetric Sandwich-Type Electronic Trimer

论文作者

Yin, Ke, Huang, Yuangen, Yin, Wenjing, Hao, Xianglin, Ma, Xikui, Dong, Tianyu

论文摘要

由于传感器的尺寸有限,对电感能量器(LC)微传感器的高性能询问一直是长期存在的挑战。一个有趣的概念是源自量子物理学的一种有趣的概念(PT)对称性,已用于改善常规读数电路的光谱分辨率和灵敏度,而PT对称条件必须满足。在这项工作中,提出了一种基于扰动的PT对称电子夹子的三明治型无线电容读数机构,而无需对读取器电路进行手动调整。理论特征值分析通过求解系统方程,表明该系统在弱耦合方面表现出单个真实模式,其特征频率会因中性谐振器的电容而变化。此外,与标准的基于PT平衡的系统相比,所提出的读数系统显示出更广泛的读数电容范围,同时与常规读取方法相比保留了较高的Q因子,该方法已通过基于印刷电路板的实验原型进行了验证。我们的工作不仅丰富了非官员物理学的基本理论,而且还显示了需要更长的询问距离的场景中的潜在应用,例如植入的医疗设备,恶劣环境中的参数检测等等。

High-performance interrogation of inductor-capacitor (LC) microsensor has been a long-standing challenge due to the limited size of the sensor. Parity-time (PT) symmetry, an intriguing concept originated from quantum physics, has been utilized to improve the spectral resolution and sensitivity of the conventional readout circuit, while the PT symmetry condition has to be satisfied. In this work, a sandwich-type wireless capacitance readout mechanism based on perturbed PT-symmetric electronic trimer without manual tuning of the reader circuit is proposed. Theoretical eigenvalue analysis by solving the system equations shows that the system exhibits single real mode in weak coupling regime whose eigenfrequency changes in response to the capacitance of the neutral resonator. Furthermore, the proposed readout system exhibits wider readout capacitance range compared to standard PT-symmetry-based system while retaining higher Q-factor compared to conventional readout method, which has been validated with the experimental prototype based on printed circuit board. Our work not only enriches the underlying theory of non-Hermitian physics, but also shows potential applications in scenarios where longer interrogation distance is required, such as implanted medical devices, parameter detection in harsh environment, etc.

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