首页> 外文会议>Microrobotics and Microassembly >Progress toward photon force-based sensors: a system identificationapproach based on laser intensity modulation for measurement of the axial forceconstant of a single-beam gradient photon force t,
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Progress toward photon force-based sensors: a system identificationapproach based on laser intensity modulation for measurement of the axial forceconstant of a single-beam gradient photon force t,

机译:基于光子力的传感器的进展:一种基于激光强度调制的系统识别方法,用于测量单光束梯度光子力t的轴向力,

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Abstract: New sensor technologies with the sensitivity and specificity capable of detecting biological and chemical agents at low concentration are of increasing importance for many environmental monitoring applications. We propose a potentially new class of microsensors that exploits the mechanical dynamics of a micrometer-sized particle held in a 3D optical force trap formed by a focused laser beam. Modulation of the laser trapping power axially perturbs the microparticle from its equilibrium position and permits measurement of the mechanical compliance transfer function (force input, displacement output) characterizing the particle micromechanical dynamics. In a mechanically homogeneous and isotropic environment, the particle motion is readily modeled as a forced harmonic oscillator; however, physico-chemical interactions between the particle and its surroundings impose external forces that modify the compliance transfer function. Our preliminary measurements indicate $LS 10 ppm changes in mass of a trapped microparticle can be detected with this method, suggesting possible applications as a chemical/biological sensor or for solubility measurements of microparticles.!19
机译:摘要:具有灵敏性和特异性的新型传感器技术能够在低浓度下检测生物和化学试剂,对于许多环境监测应用而言,其重要性日益提高。我们提出了一种潜在的新型微传感器,该传感器利用了由聚焦激光束形成的3D光学力阱中保持的微米级颗粒的机械动力学。激光捕获功率的调制会从其平衡位置轴向扰动微粒,并允许测量表征微粒微机械动力学的机械柔度传递函数(力输入,位移输出)。在机械均质且各向同性的环境中,粒子运动很容易建模为强制谐波振荡器。但是,粒子与其周围环境之间的物理化学相互作用会施加外力,从而改变顺应性传递函数。我们的初步测量结果表明,采用这种方法可以检测到$ LS 10 ppm的捕获的微粒质量发生变化,这建议将其用作化学/生物传感器或微粒的溶解度测量。19

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