Nanoscale electric field sensing using a levitated nano-resonator with net charge

The nanomechanical resonator based on a levitated particle exhibits unique advantages in the development of ultrasensitive electric field detectors. We demonstrate a three-dimensional, high-sensitivity electric field measurement technology using the optically levitated nanoparticle with known net ch...

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Veröffentlicht in:Photonics research (Washington, DC) DC), 2023-02, Vol.11 (2), p.279
Hauptverfasser: Zhu, Shaocong, Fu, Zhenhai, Gao, Xiaowen, Li, Cuihong, Chen, Zhiming, Wang, Yingying, Chen, Xingfan, Hu, Huizhu
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Sprache:eng
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Zusammenfassung:The nanomechanical resonator based on a levitated particle exhibits unique advantages in the development of ultrasensitive electric field detectors. We demonstrate a three-dimensional, high-sensitivity electric field measurement technology using the optically levitated nanoparticle with known net charge. By scanning the relative position between nanoparticle and parallel electrodes, the three-dimensional electric field distribution with microscale resolution is obtained. The measured noise equivalent electric intensity with charges of 100 e reaches the order of 1    μV ⋅ cm − 1 ⋅ Hz − 1 / 2 at 1.4 × 10 − 7    mbar . Linearity analysis near resonance frequency shows a measured linear range over 91 dB limited only by the maximum output voltage of the driving equipment. This work may provide an avenue for developing a high-sensitivity electric field sensor based on an optically levitated nano-resonator.
ISSN:2327-9125
2327-9125
DOI:10.1364/PRJ.475793