Fabry-Perot Interferometric Calibration of 2D Nanomechanical Plate Resonators

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Hauptverfasser: Aguila, Myrron Albert Callera, Esmenda, Joshoua Condicion, Wang, Jyh-Yang, Lee, Teik-Hui, Yang, Chi-Yuan, Lin, Kung-Hsuan, Chang-Liao, Kuei-Shu, Kafanov, Sergey, Pashkin, Yuri A., Chen, Chii-Dong
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Veröffentlicht: 2021
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author Aguila, Myrron Albert Callera
Esmenda, Joshoua Condicion
Wang, Jyh-Yang
Lee, Teik-Hui
Yang, Chi-Yuan
Lin, Kung-Hsuan
Chang-Liao, Kuei-Shu
Kafanov, Sergey
Pashkin, Yuri A.
Chen, Chii-Dong
author_facet Aguila, Myrron Albert Callera
Esmenda, Joshoua Condicion
Wang, Jyh-Yang
Lee, Teik-Hui
Yang, Chi-Yuan
Lin, Kung-Hsuan
Chang-Liao, Kuei-Shu
Kafanov, Sergey
Pashkin, Yuri A.
Chen, Chii-Dong
contents Displacement calibration of nanomechanical plate resonators presents a challenging task. Large nanomechanical resonator thickness reduces the amplitude of the resonator motion due to its increased spring constant and mass, and its unique reflectance. Here, we show that the plate thickness, resonator gap height, and motional amplitude of circular and elliptical drum resonators, can be determined in-situ by exploiting the fundamental interference phenomenon in Fabry-Perot cavities. The proposed calibration scheme uses optical contrasts to uncover thickness and spacer height profiles, and reuse the results to convert the photodetector signal to the displacement of drumheads that are electromotively driven in their linear regime. Calibrated frequency response and spatial mode maps enable extraction of the modal radius, effective mass, effective driving force, and Young's elastic modulus of the drumhead material. This scheme is applicable to any configuration of Fabry-Perot cavities, including plate and membrane resonators.
format Preprint
id arxiv_https___arxiv_org_abs_2102_04705
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Fabry-Perot Interferometric Calibration of 2D Nanomechanical Plate Resonators
Aguila, Myrron Albert Callera
Esmenda, Joshoua Condicion
Wang, Jyh-Yang
Lee, Teik-Hui
Yang, Chi-Yuan
Lin, Kung-Hsuan
Chang-Liao, Kuei-Shu
Kafanov, Sergey
Pashkin, Yuri A.
Chen, Chii-Dong
Applied Physics
Displacement calibration of nanomechanical plate resonators presents a challenging task. Large nanomechanical resonator thickness reduces the amplitude of the resonator motion due to its increased spring constant and mass, and its unique reflectance. Here, we show that the plate thickness, resonator gap height, and motional amplitude of circular and elliptical drum resonators, can be determined in-situ by exploiting the fundamental interference phenomenon in Fabry-Perot cavities. The proposed calibration scheme uses optical contrasts to uncover thickness and spacer height profiles, and reuse the results to convert the photodetector signal to the displacement of drumheads that are electromotively driven in their linear regime. Calibrated frequency response and spatial mode maps enable extraction of the modal radius, effective mass, effective driving force, and Young's elastic modulus of the drumhead material. This scheme is applicable to any configuration of Fabry-Perot cavities, including plate and membrane resonators.
title Fabry-Perot Interferometric Calibration of 2D Nanomechanical Plate Resonators
topic Applied Physics
url https://arxiv.org/abs/2102.04705