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Micro-Gas Flow Induced Stochastic Resonance of a Nonlinear Nanomechanical Resonator

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【作者】 林劭春田添印沛然黄璞张亮杜江峰

【Author】 Shaochun Lin;Tian Tian;Peiran Yin;Pu Huang;Liang Zhang;Jiangfeng Du;Hefei National Laboratory for Physical Science at the Microscale and Department of Modern Physics,University of Science and Technology of China;CAS Key Laboratory of Microscale Magnetic Resonance, University of Science and Technology of China;Synergetic Innovation Center of Quantum Information and Quantum Physics,University of Science and Technology of China;National Laboratory of Solid State Microstructures and Department of Physics,Nanjing University;

【通讯作者】 张亮;杜江峰;

【机构】 Hefei National Laboratory for Physical Science at the Microscale and Department of Modern Physics,University of Science and Technology of ChinaCAS Key Laboratory of Microscale Magnetic Resonance, University of Science and Technology of ChinaSynergetic Innovation Center of Quantum Information and Quantum Physics,University of Science and Technology of ChinaNational Laboratory of Solid State Microstructures and Department of Physics,Nanjing University

【摘要】 Fluidics is one of the most historic subjects that are well-established over centuries on the macroscopic scale.In recent years,fluid detection using a number of micro/nano scale devices has been achieved.However,the interaction of microfluid and solid devices on micro/nano-meter scale still lacks in-depth research.We demonstrate a practical nanomechanical detector for microfluidics via a string resonator with high Q-factor,suspended over a hole.This device is placed under a jet nozzle with several microns of diameter,and the interaction between the micro-gas flow and the resonator is observed by monitoring the variation of the fundamental frequency and the quality factor.Moreover,we manage to measure the fluctuations of the micro-gas flow on the nanomechanical resonator by means of stochastic resonance.This work manifests a potential platform for detecting dynamical fluid behaviors at microscopic scale for novel fluid physics.

【Abstract】 Fluidics is one of the most historic subjects that are well-established over centuries on the macroscopic scale.In recent years,fluid detection using a number of micro/nano scale devices has been achieved.However,the interaction of microfluid and solid devices on micro/nano-meter scale still lacks in-depth research.We demonstrate a practical nanomechanical detector for microfluidics via a string resonator with high Q-factor,suspended over a hole.This device is placed under a jet nozzle with several microns of diameter,and the interaction between the micro-gas flow and the resonator is observed by monitoring the variation of the fundamental frequency and the quality factor.Moreover,we manage to measure the fluctuations of the micro-gas flow on the nanomechanical resonator by means of stochastic resonance.This work manifests a potential platform for detecting dynamical fluid behaviors at microscopic scale for novel fluid physics.

【基金】 Supported by the National Key R&D Program of China (Grant No.2018YFA0306600);the Chinese Academy of Sciences(Grant Nos.GJJSTD20170001 and QYZDY-SSW-SLH004);Anhui Initiative in Quantum Information Technologies (Grant No.AHY050000)
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2021年02期
  • 【分类号】TH113.1
  • 【下载频次】20
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