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Noise suppression for micromechanical resonator via intrinsic dynamic feedback
Ian H.; Gong Z.-R.; Sun C.-P.
2008-09-01
Source PublicationFrontiers of Physics in China
ISSN16733487 16733606
Volume3Issue:3Pages:294-305
Abstract

We study a dynamic mechanism to passively suppress the thermal noise of a micromechanical resonator through an intrinsic self-feedback that is genuinely non-Markovian. We use two coupled resonators, one as the target resonator and the other as an ancillary resonator, to illustrate the mechanism and its noise reduction effect. The intrinsic feedback is realized through the dynamics of coupling between the two resonators: the motions of the target resonator and the ancillary resonator mutually inthence each other in a cyclic fashion. Specifically, the states that the target resonator has attained earlier will affect the state it attains later due to the presence of the ancillary resonator. We show that the feedback mechanism will bring forth the effect of noise suppression in the spectrum of displacement, but not in the spectrum of momentum. © 2008 Higher Education Press.

KeywordCooling Fluctuations Intrinsic Feedback
DOI10.1007/s11467-008-0025-z
URLView the original
Language英語English
WOS IDWOS:000207630800007
Scopus ID2-s2.0-47049097010
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Citation statistics
Document TypeJournal article
CollectionUniversity of Macau
AffiliationInstitute of Theoretical Physics Chinese Academy of Sciences
Recommended Citation
GB/T 7714
Ian H.,Gong Z.-R.,Sun C.-P.. Noise suppression for micromechanical resonator via intrinsic dynamic feedback[J]. Frontiers of Physics in China, 2008, 3(3), 294-305.
APA Ian H.., Gong Z.-R.., & Sun C.-P. (2008). Noise suppression for micromechanical resonator via intrinsic dynamic feedback. Frontiers of Physics in China, 3(3), 294-305.
MLA Ian H.,et al."Noise suppression for micromechanical resonator via intrinsic dynamic feedback".Frontiers of Physics in China 3.3(2008):294-305.
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