Casimir probe based upon metallized high Q SiN nanomembrane resonator.

We present the instrumentation and measurement scheme of a new Casimir force probe that bridges Casimir force measurements at microscale and macroscale. A metallized high Q silicon nitride nanomembrane resonator is employed as a sensitive force probe. The high tensile stress present in the nanomembr...

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Main Authors: Garcia-Sanchez, D, Fong, K, Bhaskaran, H, Lamoreaux, S, Tang, H
Format: Journal article
Jezik:English
Izdano: 2013
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author Garcia-Sanchez, D
Fong, K
Bhaskaran, H
Lamoreaux, S
Tang, H
author_facet Garcia-Sanchez, D
Fong, K
Bhaskaran, H
Lamoreaux, S
Tang, H
author_sort Garcia-Sanchez, D
collection OXFORD
description We present the instrumentation and measurement scheme of a new Casimir force probe that bridges Casimir force measurements at microscale and macroscale. A metallized high Q silicon nitride nanomembrane resonator is employed as a sensitive force probe. The high tensile stress present in the nanomembrane not only enhances the quality factor but also maintains high flatness over large area serving as the bottom electrode in a sphere-plane configuration. A fiber interferometer is used to readout the oscillation of the nanomembrane and a phase-locked loop scheme is applied to track the change of the resonance frequency. Because of the high quality factor of the nanomembrane and the high stability of the setup, a frequency resolution down to 2 × 10(-9) and a corresponding force gradient resolution of 3 μN/m is achieved. Besides sensitive measurement of Casimir force, our measurement technique simultaneously offers Kelvin probe measurement capability that allows in situ imaging of the surface potentials.
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spelling oxford-uuid:fc1da1ac-5ffc-4a3c-a297-7fedc20ed3eb2022-03-27T13:18:30ZCasimir probe based upon metallized high Q SiN nanomembrane resonator.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:fc1da1ac-5ffc-4a3c-a297-7fedc20ed3ebEnglishSymplectic Elements at Oxford2013Garcia-Sanchez, DFong, KBhaskaran, HLamoreaux, STang, HWe present the instrumentation and measurement scheme of a new Casimir force probe that bridges Casimir force measurements at microscale and macroscale. A metallized high Q silicon nitride nanomembrane resonator is employed as a sensitive force probe. The high tensile stress present in the nanomembrane not only enhances the quality factor but also maintains high flatness over large area serving as the bottom electrode in a sphere-plane configuration. A fiber interferometer is used to readout the oscillation of the nanomembrane and a phase-locked loop scheme is applied to track the change of the resonance frequency. Because of the high quality factor of the nanomembrane and the high stability of the setup, a frequency resolution down to 2 × 10(-9) and a corresponding force gradient resolution of 3 μN/m is achieved. Besides sensitive measurement of Casimir force, our measurement technique simultaneously offers Kelvin probe measurement capability that allows in situ imaging of the surface potentials.
spellingShingle Garcia-Sanchez, D
Fong, K
Bhaskaran, H
Lamoreaux, S
Tang, H
Casimir probe based upon metallized high Q SiN nanomembrane resonator.
title Casimir probe based upon metallized high Q SiN nanomembrane resonator.
title_full Casimir probe based upon metallized high Q SiN nanomembrane resonator.
title_fullStr Casimir probe based upon metallized high Q SiN nanomembrane resonator.
title_full_unstemmed Casimir probe based upon metallized high Q SiN nanomembrane resonator.
title_short Casimir probe based upon metallized high Q SiN nanomembrane resonator.
title_sort casimir probe based upon metallized high q sin nanomembrane resonator
work_keys_str_mv AT garciasanchezd casimirprobebaseduponmetallizedhighqsinnanomembraneresonator
AT fongk casimirprobebaseduponmetallizedhighqsinnanomembraneresonator
AT bhaskaranh casimirprobebaseduponmetallizedhighqsinnanomembraneresonator
AT lamoreauxs casimirprobebaseduponmetallizedhighqsinnanomembraneresonator
AT tangh casimirprobebaseduponmetallizedhighqsinnanomembraneresonator