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验证一种用于表征谐振器网络的代数方法。

Validating an algebraic approach to characterizing resonator networks.

作者信息

Horowitz Viva R, Carter Brittany, Hernandez Uriel F, Scheuing Trevor, Alemán Benjamín J

机构信息

Physics Department, Hamilton College, Clinton, NY, 13323, USA.

Department of Physics, University of Oregon, Eugene, OR, 97403, USA.

出版信息

Sci Rep. 2024 Jan 15;14(1):1325. doi: 10.1038/s41598-023-50089-1.

Abstract

Resonator networks are ubiquitous in natural and engineered systems, such as solid-state materials, electrical circuits, quantum processors, and even neural tissue. To understand and manipulate these networks it is essential to characterize their building blocks, which include the mechanical analogs of mass, elasticity, damping, and coupling of each resonator element. While these mechanical parameters are typically obtained from response spectra using least-squares fitting, this approach requires a priori knowledge of all parameters and is susceptible to large error due to convergence to local minima. Here we validate an alternative algebraic means to characterize resonator networks with no or minimal a priori knowledge. Our approach recasts the equations of motion of the network into a linear homogeneous algebraic equation and solves the equation with a set of discrete measured network response vectors. For validation, we employ our approach on noisy simulated data from a single resonator and a coupled resonator pair, and we characterize the accuracy of the recovered parameters using high-dimension factorial simulations. Generally, we find that the error is inversely proportional to the signal-to-noise ratio, that measurements at two frequencies are sufficient to recover all parameters, and that sampling near the resonant peaks is optimal. Our simple, powerful tool will enable future efforts to ascertain network properties and control resonator networks in diverse physical domains.

摘要

谐振器网络在自然和工程系统中无处不在,如固态材料、电路、量子处理器,甚至神经组织。为了理解和操控这些网络,关键是要表征其组成部分,其中包括每个谐振器元件的质量、弹性、阻尼和耦合的力学类似物。虽然这些力学参数通常通过使用最小二乘法拟合从响应谱中获得,但这种方法需要所有参数的先验知识,并且由于收敛到局部最小值而容易产生较大误差。在这里,我们验证了一种替代的代数方法,用于在没有或仅有最少先验知识的情况下表征谐振器网络。我们的方法将网络的运动方程重铸为线性齐次代数方程,并使用一组离散的测量网络响应向量来求解该方程。为了进行验证,我们将我们的方法应用于来自单个谐振器和耦合谐振器对的噪声模拟数据,并使用高维因子模拟来表征恢复参数的准确性。一般来说,我们发现误差与信噪比成反比,在两个频率处的测量足以恢复所有参数,并且在谐振峰附近采样是最佳的。我们这个简单而强大的工具将使未来能够确定网络特性并在不同物理领域中控制谐振器网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f31d/10789822/4fb4be090f9c/41598_2023_50089_Fig1_HTML.jpg

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