Highly Sensitive Complicated Spectrum Analysis in Micro-Bubble Resonators Using the Orthogonal Demodulation Pound–Drever–Hall Technique

Highly Sensitive Complicated Spectrum Analysis in Micro-Bubble Resonators Using the Orthogonal Demodulation Pound–Drever–Hall Technique
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使用正交解调 Pound-Drever-Hall 技术对微泡谐振器进行高灵敏度复杂频谱分析

DOI:
10.3390/app10186256
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发表时间:
2020-09
期刊:
影响因子:
--
通讯作者:
Lei Xu
Lei Xu
中科院分区:
--
文献类型:
--
作者:
Jinliang Hu;Sheng Liu;Biao Li;Zhihe Guo;Xiang Wu;Liying Liu;Lei Xu

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回声廊模微气泡光腔在实验环境中是非对称椭球体,这使得它们的模非简并。这样就产生了复杂的密集光谱。在这个密集的光谱中存在重叠和耦合共振。在这项研究中,我们确定了正交解调Pound-Drever-Hall技术可以用来分析复杂的共振。用这种方法可以分析重叠的弱耦合共振和强耦合共振。与光谱简化和Fano共振从头算理论相比,该方法具有重复性好、简便、灵敏、准确等优点。该方法可以扩大差动共振传感的测量范围,从而实现对重叠共振的差动传感。
Whispering gallery mode micro-bubble optical cavities are asymmetrical ellipsoids in experimental settings, which makes their modes nondegenerate. A complicated dense spectrum is thus generated. Overlapping and coupled resonances exist in this dense spectrum. In this study, we determined that the orthogonal demodulation Pound-Drever-Hall technique can be used to analyze complicated resonances. Using this method, overlapping weak and strong coupling resonances can be analyzed. Compared to spectrum simplification and the ab initio theory of Fano resonances, this method is repeatable, simple, sensitive, and accurate. The method can increase the measurement range of differential resonance sensing, thus allowing the differential sensing of overlapped resonances.
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发表时间: 2005-04
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