Frequency span optimization for asymmetric resonance curve fitting
Kostiantyn Torokhtii, Andrea Alimenti, Nicola Pompeo, Enrico Silva

TL;DR
This paper explores optimizing the frequency span in resonant measurements to improve data fitting accuracy, focusing on asymmetric resonance curves through simulation and experimental analysis.
Contribution
It introduces a method to determine the optimal frequency span for asymmetric resonance curve fitting in standard experimental systems.
Findings
Optimal frequency span ranges identified for various asymmetries
Enhanced accuracy in resonant parameter estimation
Guidelines for span selection in practical measurements
Abstract
The wide application of the modern resonant measurement techniques makes all the steps of the measuring process, including data acquisition more efficient and reliable. Here we investigate the multidimensional space of the parameters to determine the optimum span for resonant measurements. The study concentrated on experimental systems with standard performance and capabilities. We determine the range of the optimum span for the resonant frequency and quality factor by simulating and fitting resonant curves with different levels of asymmetry.
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