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In situ calibrating optical tweezers with sinusoidal-wave drag force method

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【作者】 李迪周金华呼新尧钟敏成龚雷王自强王浩威李银妹

【Author】 Li Di;Zhou Jin-Hua;Hu Xin-Yao;Zhong Min-Cheng;Gong Lei;Wang Zi-Qiang;Wang Hao-Wei;Li Yin-Mei;Department of Optics and Optical Engineering, University of Science and Technology of China;Hefei National Laboratory for Physical Sciences at the Microscale;

【机构】 Department of Optics and Optical Engineering, University of Science and Technology of ChinaHefei National Laboratory for Physical Sciences at the Microscale

【摘要】 We introduce a corrected sinusoidal-wave drag force method(SDFM) into optical tweezers to calibrate the trapping stiffness of the optical trap and conversion factor(CF) of photodetectors. First, the theoretical analysis and experimental result demonstrate that the correction of SDFM is necessary, especially the error of no correction is up to 11.25% for a bead of 5 μm in diameter. Second, the simulation results demonstrate that the SDFM has a better performance in the calibration of optical tweezers than the triangular-wave drag force method(TDFM) and power spectrum density method(PSDM) at the same signal-to-noise ratio or trapping stiffness. Third, in experiments, the experimental standard deviations of calibration of trapping stiffness and CF with the SDFM are about less than 50% of TDFM and PSDM especially at low laser power.Finally, the experiments of stretching DNA verify that the in situ calibration with the SDFM improves the measurement stability and accuracy.

【Abstract】 We introduce a corrected sinusoidal-wave drag force method(SDFM) into optical tweezers to calibrate the trapping stiffness of the optical trap and conversion factor(CF) of photodetectors. First, the theoretical analysis and experimental result demonstrate that the correction of SDFM is necessary, especially the error of no correction is up to 11.25% for a bead of 5 μm in diameter. Second, the simulation results demonstrate that the SDFM has a better performance in the calibration of optical tweezers than the triangular-wave drag force method(TDFM) and power spectrum density method(PSDM) at the same signal-to-noise ratio or trapping stiffness. Third, in experiments, the experimental standard deviations of calibration of trapping stiffness and CF with the SDFM are about less than 50% of TDFM and PSDM especially at low laser power.Finally, the experiments of stretching DNA verify that the in situ calibration with the SDFM improves the measurement stability and accuracy.

【基金】 supported by the National Natural Science Foundation of China(Grant Nos.11302220,11374292,and 31100555);the National Basic Research Program of China(Grant No.2011CB910402)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2015年11期
  • 【分类号】TH74
  • 【下载频次】39
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